Publikationen

Zhang, W., Planas-Marquès, M., Mazier, M., Šimkovicová, M., Rocafort, M., Mantz, M., Huesgen, P., Takken, F., Stintzi, A., Schaller, A., Sánchez-Coll, N., Valls, M. (2024) The tomato P69 subtilase family is involved in resistance to bacterial wilt.Plant J.9: 2085–2094. 2024

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Abstract (PubMed)
Wang, X., Li, R., Stintzi, A., Schaller, A. (2024). Automated Real-Time Monitoring of Extracellular pH to Assess Early Plant Defense Signaling. In: Schaller, A. (eds) Plant Peptide Hormones and Growth Factors. Meth. Mol. Biol. 2731:169-178. 2024

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Abstract (in PubMed)
Bühler, E., Schaller, A., Stührwohldt, N. (2024). A Quick Method to Analyze Peptide-Regulated Anthocyanin Biosynthesis. In: Schaller, A. (eds) Plant Peptide Hormones and Growth Factors. Meth. Mol. Biol. 2731:143-156.
2024

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Abstract (PubMed)
Elsäßer, G., Seidl, T., Pfannstiel, J., Schaller, A., Stührwohldt, N. (2024). Characterization of Prolyl-4-Hydroxylase Substrate Specificity Using Pichia pastoris as an Efficient Eukaryotic Expression System. In: Schaller, A. (eds) Plant Peptide Hormones and Growth Factors. Meth. Mol. Biol. 2731:59-80. 2024

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Abstract (in PubMed)
Li, R., Schaller, A., Stintzi, A. (2024). Quantitative Measurement of Pattern-Triggered ROS Burst as an Early Immune Response in Tomato. In: Schaller, A. (eds) Plant Peptide Hormones and Growth Factors. Meth. Mol. Biol. 2731:157-168.
2024

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Abstract (PubMed)
Yang, H., Kim, X., Skłenar, J., Aubourg, S., Sancho-Andrés, G., Stahl, E., Guillou, M.-C., Gigli-Bisceglia, N., Tran Van Canh, L., Bender, K.W., Stintzi, A., Reymond, P., Sánchez-Rodríguez, C., Testerink, C., Renou, J.-P., Menke, F.L.H., Schaller, A., Rhodes, J., Zipfel, C. (2023) Subtilase-mediated biogenesis of the expanded family of SERINE RICH ENDOGENOUS PEPTIDES. Nat. Plants. 9(12):1081-1093 2023

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Abstract (in PubMed)
Bühler, E., Fahrbach, E., Schaller, A., Stührwohldt, N. (2023) Sulfo-peptide CLEL6 inhibits anthocyanin biosynthesis in Arabidopsis thaliana. Plant Physiol. 193:809-820
2023

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Abstract (PubMed)
Wang, N., Wang, Z., Tzourtzou, S., Wang, X., Bi, X., Leimeister, J., Xu, L., Sakamoto, T., Matsunaga, S., Schaller, A., Jiang, H., Liu, C. (2023) The plant nuclear lamina disassembles to regulate genome folding in stress conditions. Nat. Plants. 9(7):1081-1093 2023

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Abstract (in PubMed)
Royek, S., Brück, S., Pfannstiel, J., Stintzi, A., Schaller, A. (2023) Improved identification of protease cleavage sites by in-gel reductive dimethylation. In: Lois, L.M., Trujillo, M. (eds) Plant Proteostasis. Meth. Mol. Biol. 2581:337–349.
2023

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Abstract (PubMed)
Reichardt, S., Stintzi, A., Schaller, A. (2023) Assay for phytaspase-mediated peptide precursor cleavage using synthetic oligopeptide substrates. bio-protocol 13(3): e4608. 2023

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Abstract (in PubMed)
Brück, S., Pfannstiel, J., Ingram, G., Stintzi, A., Schaller, A. (2023) Analysis of peptide hormone maturation and processing specificity using isotope-labeled peptides. Meth. Mol. Biol., vol. 2581:323-335.
2023

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Abstract (PubMed)
Jiang J., Stührwohldt, N., Liu, T., Huang, Q., Li, L., Zhang, L., Gu, H., Fan, L., Zhong, S., Schaller, A., Qu, L.-J. (2022) Egg cell-secreted aspartic proteases ECS1/2 promote gamete attachment to prioritize the fertilization of egg cells over central cells in Arabidopsis J. Integr. Plant Biol.64: 2047-2059. 2022

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Abstract (in PubMed)
Royek, S., Bayer, M., Pfannstiel, J., Pleiss, J., Ingram, G., Stintzi, A., Schaller, A. (2022) Processing of a plant peptide hormone precursor facilitated by post-translational tyrosine sulfation. Proc. Natl. Acad. Sci. USA, 119: e2201195119
2022

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Abstract (PubMed)
Stintzi, A., Stührwohldt, N., Royek, S., Schaller, A. (2022) Identification of cognate protease/substrate pairs by use of class-specific inhibitors. Meth. Mol. Biol. 2447:67-81. 2022

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Abstract (in PubMed)
Wang, X., Pfannstiel, J., Stintzi, A., Schaller, A. (2022) Peptide backbone modifications for the assessment of cleavage site relevance in precursors of signaling peptides. Meth. Mol. Biol. 2447:83-93.
2022

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Abstract (PubMed)
Truskina, J., Brück, S., Stintzi, A., Boeuf, S., Doll, N.M., Fujita, S., Geldner, N., Schaller, A., Ingram, G.C. (2022) A peptide-mediated, multilateral molecular dialogue for the coordination of pollen wall formation. Proc. Natl. Acad. Sci. USA. 119 (22): e2201446119. 2022

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Abstract (in PubMed)
Stintzi, A. and Schaller, A. (2022) Biogenesis of peptide signals for plant reproductive development. Curr. Opin. Plant Biol. 69: 102274.2022

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Abstract (PubMed)
Greifenhagen, A., Braunstein, I., Pfannstiel, J., Yoshida, S., Shirasu, K., Schaller, A., Spallek T. (2021) The Phtheirospermum japonicum isopentenyltransferase PjIPT1a regulates host cytokinin responses in Arabidopsis. New Phytol. 232: 1582–1590 2021

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Abstract (in PubMed)
Stührwohldt, N., Bühler. E., Sauter, M., Schaller, A. (2021) Phytosulfokine (PSK) precursor processing by subtilase SBT3.8 and PSK signaling improve drought stress tolerance in Arabidopsis. J. Exp. Bot. 72: 3427–3440
2021

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Abstract (PubMed)
Ogawa, S., Wakatake, T., Spallek, T., Ishida, J.K., Sano, R., Kurata, T., Demura, T., Yoshida, S., Ichihashi Y., Schaller, A., Shirasu, K. (2021) Subtilase activity in intrusive cells mediates haustorium maturation in parasitic plants. Plant Physiol. 185: 1381-1394 2021

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Abstract (in PubMed)
Stührwohldt, N., Ehinger, A., Thellmann, K., Schaller, A. (2020) Processing and formation of bioactive CLE40 peptide are controlled by post-translational proline hydroxylation. Plant Physiol. 184: 1573-1584

2020

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Abstract (PubMed)
Stührwohldt, N., Scholl, S., Lang, L., Katzenberger, J., Schumacher, K., Schaller A. (2020) The biogenesis of CLEL peptides involves several processing events in consecutive compartments of the secretory pathway. eLife 9:e555802020

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Abstract (in PubMed)
Reichardt, S., Piepho, H.-P., Stintzi, A., Schaller, A. (2020) Peptide signaling for tomato flower drop. Science 367: 1482-1485

2020

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Abstract (PubMed)
Doll, N.M., Royek, S., Fujita, S., Okuda, S., Chamot, S., Stintzi, A., Widiez, T., Hothorn, M., Schaller, A., Geldner, N., Ingram, G. (2020) A two-way molecular dialogue between embryo and endosperm is required for seed development. Science 367: 431-4352020

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Abstract (in PubMed)
Haj Ahmad, F., Wu, X., Stintzi, A., Schaller, A., Schulze, W.X. (2019) The systemin signaling cascade as derived from time course analyses of the systemin-responsive phosphoproteome. Mol. Cell. Proteomics 18: 1526-1542

2019

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Abstract (PubMed)
Stührwohldt, N., Schaller, A. (2019): Regulation of plant peptide hormones and growth factors by post-translational modification. Plant Biol. 21: 49-632019

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Abstract (in PubMed)
Chini, A., Monte, I., Zamarreño, A.M., Hamberg, M., Lassueur, S., Reymond, P., Weiss, S., Stintzi, A., Schaller, A., Porzel, A., García-Mina, J.M., Solano, R. (2018): An ORP3-independent pathway uses 4,5-didehydro-jasmonate for jasmonate synthesis. Nature Chem. Biol. 14: 171–1782018

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Abstract (PubMed)
Beloshistov, R.E., Dreizler, K., Galiullina, R.A., Tuzhikov, A.I., Serebryakova, M.V., Reichardt, S., Shaw, J., Taliansky, M.E., Pfannstiel, J., Chichkova, N.V., Stintzi, A., Schaller, A., Vartapetian, A.B. (2018):  Phytaspase-mediated precursor processing and maturation of the wound hormone systemin. New. Phytol. 218: 1167–11782018

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Abstract (in PubMed)
Reichardt, S., Repper, D., Tuzhikov, A.I., Galiullina, R.A., Planas-Marquès, M., Chichkova, N.V., Vartapetian, A.B., Stintzi, A. and Schaller, A. (2018): The tomato subtilase family includes several cell death-related proteinases with caspase specificity. Sci. Rep. 8:105312018

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Abstract (PubMed)
Stührwohldt, N., Hohl, M., Schardon, K., Stintzi, A., Schaller, A. (2018): Post-translational maturation of IDA, a peptide signal controlling floral organ abscission in Arabidopsis. Commun. Integr. Biol. 11: e13951192018

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Abstract (in PubMed)
Schaller, A., Stintzi, A., Rivas, S., Serrano, I., Chichkova, N.V., Vartapetian, A.B., Martínez, D., Guiamét, J.J., Sueldo, D.J., van der Hoorn, R.A.L., Ramírez, V., Vera P. (2018): From structure to function - a family portrait of plant subtilases. New. Phytol. 218: 901-9152018

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Abstract (PubMed)
Stührwohldt, N., Schardon, K., Stintzi, A., Schaller, A. (2017): A toolbox for the analysis of peptide signal biogenesis. Mol. Plant 10: 1023-10252017

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Abstract (in PubMed)
Hohl, M., Stintzi, A., Schaller, A. (2017): A novel subtilase inhibitor in plants shows structural and functional similarities to protease propeptides. J. Biol. Chem. 292: 6389-64012017

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Abstract (PubMed)
Effenberger, I., Harport, M., Pfannstiel, J., Klaiber, I., Schaller, A. (2017): Expression in Pichia pastoris and characterization of two novel dirigent proteins for atropselective formation of gossypol. Appl. Microbiol. Biotechnol. 101: 2021–20322017

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Abstract (in PubMed)
Schardon., K., Hohl, M., Graff, L., Schulze, W., Pfannstiel, J., Stintzi, A., Schaller, A. (2016): Precursor processing for plant peptide hormone maturation by subtilisin-like serine proteinases. Science, 354: 1594-15972016

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Abstract (PubMed)
Gasper, R., Effenberger, I., Kolesinski, P., Terlecka, B., Hofmann, E., Schaller, A. (2016): Dirigent protein mode of action revealed by the crystal structure of AtDIR6. Plant Physiol. 172: 2165–21752016

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Abstract (in PubMed)
Meyer, M., Huttenlocher, F., Cedzich, A., Procopio, S., Stroeder, J., Pau-Roblot, C., Lequart-Pillon, M., Pelloux, J., Stintzi, A., Schaller, A. (2016): The subtilisin-like protease SBT3 contributes to insect resistance in tomato. J. Exp. Bot. 67: 4325-43382016

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Abstract (PubMed)
Meyer, M., Leptihn, S., Welz, M., Schaller, A. (2016): Functional characterization of propeptides in plant subtilases as intramolecular chaperones and inhibitors of the mature protease. J. Biol. Chem. 291: 19449–194612016

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Abstract (in PubMed)
Zimmermann, D., Pasule, C., Gomez-Barrera J.A., Stintzi, A., Brack-Frick, U.B., Sieferer, E., Nicholson, T.M., Pfannstiel, J., Schaller, A. (2016): Cell death control by matrix metalloproteinases in tomato. Plant Physiol. 171: 1456-14692016

Journal Link

Abstract (PubMed)
Effenberger, I., Zhang, B., Li, L., Wang, Q., Liu, Y., Klaiber, I., Pfannstiel, J., Wang, Q., Schaller, A. (2015): Dirigentproteine der Baumwolle (Gossypium sp.) für die atroposelektive Synthese von Gossypol. Angew. Chem. 127: 14870–148742015

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Abstract (in PubMed)
Effenberger, I., Zhang, B., Li, L., Wang, Q., Liu, Y., Klaiber, I., Pfannstiel, J., Wang, Q., Schaller, A. (2015): Dirigent proteins from cotton (Gossypium sp.) for the atropselective synthesis of gossypol. Angew. Chem. Int. Ed. 54: 14660–146632015

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Abstract (PubMed)
Mayer, K., Albrecht, S., Schaller, A. (2015) Targeted Analysis of Protein Phosphorylation by 2D Electrophoresis. In Plant Phosphoproteomics: Methods and Protocols (Ed. W. Schulze) Methods Mol. Biol. Vol. 1306: 167-176, Springer Science+Business media, New York2015

book chapter

Abstract (in PubMed)
Bosch, M., Wright, L.P., Gershenzon, J., Wasternack, C., Hause, B., Schaller, A., Stintzi, A. (2014): Jasmonic acid and its precursor 12-oxophytodienoic acid control different aspects of constitutive and induced herbivore defenses in tomato. Plant Physiol. 166: 396-410.2014

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Abstract (PubMed)
Bosch, M., Berger, S., Schaller, A., Stintzi, A. (2014) Jasmonate-dependent induction of polyphenol oxidase activity in tomato foliage is important for defense against Spodoptera exigua but not against Manduca sexta. BMC Plant Biol. 14: 2572014

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Abstract (in PubMed)
Sénéchal, F., Graff, L., Surcouf, O., Marcelo, P., Rayon, C., Bouton, S., Fournet, F., Mareck, A., Mouille, G., Stintzi, A., Höfte, H., Lerouge, P., Schaller, A., Pelloux, J. (2014): Arabidopsis PECTIN METHYLESTERASE17 is co-expressed with and processed by SBT3.5, a subtilisin-like serine protease. Ann. Bot. 114:1161-11752014

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Abstract (PubMed)
Pickel, B., Schaller, A. (2013): Dirigent proteins: molecular characteristics and potential biotechnological applications. Appl. Microbiol. Biotech. 97: 8427-84382013

Journal Link

Abstract (in PubMed)
Schaller, A. (2013): Plant subtilisins. In: Handbook of proteolytic enzymes. N. Rawlings and G. Salvesen (eds); 3rd edition; Vol. 3, pp. 3247-3254, Academic Press 2013

book chapter

Abstract (PubMed)
Huet, Y., Schaller, A. (2013): Plinsulysin. In: Handbook of proteolytic enzymes. N. Rawlings and G. Salvesen (eds); 3rd edition; Vol. 1, pp. 1447-1450, Academic Press 2013

book chapter

Abstract (in PubMed)
Kazenwadel, C., Klebensberger, J., Richter, S., Pfannstiel, J., Gerken, U., Pickel, B., Schaller, A., Hauer, B. (2013). Optimized expression of the dirigent protein AtDIR6 in Pichia pastoris and impact of glycosylation on protein structure and function. Appl. Microbiol. Biotech. 97: 7215-72272013

Journal Link

Abstract (PubMed)
Rimon Knopf, R., Feder, A., Mayer, K., Lin, A., Rozenberg, M., Schaller, A., Zach, A. (2012) Rhomboid proteins in the chloroplast envelope affect the level of allene oxide synthase in Arabidopsis thaliana. Plant J. 72: 559-5712012

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Abstract (in PubMed)
Pickel, B., Pfannstiel, J., Steudle, A., Lehmann, A., Gerken, U., Pleiss, J., Schaller, A. (2012): A model of dirigent proteins derived from structural and functional similarities with allene oxide cyclase and lipocalins. FEBS J. 279: 1980-1993.2012

Journal Link

Abstract (PubMed)
Schaller, A., Stintzi, A., Graff, L. (2012): Subtilases – versatile tools for protein turnover, plant development, and interactions with the environment. Physiol. Plant. 145: 52-662012

Journal Link

Abstract (in PubMed)
Behringer, C., Bartsch, K., Schaller, A. (2011): Safeners recruit multiple signaling pathways for the orchestrated induction of the cellular xenobiotic detoxification machinery in Arabidopsis. Plant Cell Environ. 34: 1970-1985.2011

Journal Link

Abstract (PubMed)
Schaller, A. (2010) Plant Biotechnology relies on basic research. Public Service Review: Science & Technology 7: 164-1652010

Journal Link

Abstract (in PubMed)
Rose, R., Schaller, A., Ottmann, C. (2010): Structural features of plant subtilases. Plant Signal. Behav. 5: 180-183.2010

Journal Link

Abstract (PubMed)
Pickel, B., Constantin, M.-A., Pfannstiel, J., Conrad, J., Beifuss, U., Schaller , A. (2010): An enantiocomplementary dirigent protein for the enantioselective, laccase-catalyzed oxidative coupling of phenols. Angew. Chem. Int. Ed. 49: 202-2042010

Journal Link

Abstract (in PubMed)
Ottmann, C., Rose, R., Huttenlocher, F., Cedzich, A., Hauske, P., Kaiser, M., Huber, R., Schaller, A. (2009): Structural basis for calcium-independence and activation by dimerization of tomato subtilase 3. Proc. Natl. Acad. Sci. USA 106: 17223-17228.2009

Journal Link

Abstract (PubMed)
Breithaupt, C., Kurzbauer, R., Schaller, F., Stintzi, A., Schaller, A., Huber, R., Macheroux, P., Clausen, T. (2009): Structural basis of substrate specificity of plant 12-oxophytodienoate reductases. J. Mol. Biol. 392: 1266-12772009

Journal Link

Abstract (in PubMed)
Schaller, A., Stintzi, A. (2009): Enzymes in jasmonate biosynthesis - structure, function, regulation. Phytochemistry, 70: 1532-1538.2009

Journal Link

Abstract (PubMed)
Rose, R., Huttenlocher, F., Cedzich, A., Kaiser, M., Schaller, A., Ottmann, C. (2009): Purification, crystallization and preliminary X-ray diffraction analysis of a plant subtilase. Acta Cryst. F 65, 522-5252009

Journal Link

Abstract (in PubMed)
Cedzich, A., Huttenlocher, F., Kuhn, B.M., Pfannstiel, J., Gabler, L., Stintzi, A., Schaller, A. (2009): The protease-associated (PA) domain and C-terminal extension are required for zymogen processing, sorting within the secretory pathway and activity of tomato subtilase 3 (SlSBT3). J. Biol. Chem. 284: 14068-14078.2009

Journal Link

Abstract (PubMed)
Schaller, A. (ed) (2008): Induced Plant Resistance against Herbivory, Springer Science+Business Media B.V.book
Schaller, A., Stintzi, A. (2008): Jasmonate biosynthesis and signaling for induced plant defense against herbivory. In: Induced Plant Resistance against Herbivory. A. Schaller (ed), Springer, pp. 349-366.Volltext als PDFAbstract (RG)
Howe, G.A., Schaller, A. (2008): Direct defenses in plants and their induction by wounding and insect herbivores. In: Induced plant resistance against herbivory (A. Schaller, Ed.) Springer, Heidelberg book chapterAbstract (RG)
Huet, Y., Strassner, J., Schaller A. (2008): Cloning, expression and characterization of insulin-degrading enzyme from tomato (Solanum lycopersicum). Biol. Chem. 308:91-98.Journal LinkAbstract (PubMed)
Breithaupt, C., Kurzbauer, R., Lilie, H., Schaller, A., Strassner, J., Huber, R., Macheroux, P., Clausen, T. (2006): Crystal structure of 12-oxophytodienoate reductase 3 from tomato: Self-inhibition by dimerization. Proc. Natl. Acad. Sci. USA 103: 14337-14342Journal LinkAbstract (in PubMed)
Pieterse, C.M.J., Schaller, A., Mauch-Mani, B. and Conrath, U. (2006): Signaling in plant resistance responses: divergence and cross-talk of defense pathways. In: Multigenic and Induced Systemic Resistance in Plants. S. Tuzun and E. Bent (Eds.) pp. 166-196, Springer, New York.book
book chapter
Rautengarten, C., Steinhauser, D., Büssis, D., Stintzi, A., Schaller, A., Kopka, J., Altmann, T. (2005): Inferring hypotheses on functional relationships of genes: Analysis of the Arabidopsis thaliana subtilase gene family. PLoS Comput. Biol. 1(4): e40Journal LinkAbstract (in PubMed)
Schaller, F., Schaller, A., Stintzi, A. (2004): Biosynthesis and metabolism of jasmonates. J. Plant Growth Regul. 23: 179-199.Journal LinkAbstract (PubMed)
Schaller, A. (2004) A cut above the rest: the regulatory function of plant proteases. Planta 220: 183-197Journal LinkAbstract (in PubMed)
Kuhn, E. and Schaller, A. (2004) DNA Microarrays: Methodology, data evaluation and application in the analysis of plant defense signaling. In: Genetic Engineering - Principles and Methods, Volume 26, Kluwer Academic/Plenum Publishers: 49-84.bookAbstract (RG)
Zhao, Y., Thilmony, R., Bender, C. L., Schaller, A., He, S. Y., Howe, G. A. (2003) Virulence systems of Pseudomonas syringae pv. tomato promote bacterial speck disease in tomato by targeting the jasmonate signalling pathway. Plant J. 36, 485-499Journal LinkAbstract (in PubMed)
Strassner, J. Schaller, F. Frick, U. B.,  Howe, G. A., Weiler, E. W., Amrhein, N. Macheroux, P. Schaller, A. (2002). Characterization and cDNA-microarray expression analysis of 12-oxophytodienoate reductases reveals differential roles for octadecanoid biosynthesis in the local versus the systemic wound response. Plant J. 32, 585-601.Journal LinkAbstract (in Pubmed)
Frick, U. B and Schaller, A. (2002). cDNA microarray analysis of fusicoccin-induced changes in gene expression in tomato. Planta 216, 83-94Journal LinkAbstract (in PubMed)
Schaller A. (2002): Die Abwehr von Fressfeinden: Selbstverteidigung im Pflanzenreich. Vierteljahresschrift der Naturforschenden Gesellschaft in Zürich 147, 141-150.Journal Link
Rutschmann, F., Stalder, U., Piotrowski, M., Oecking, C., Schaller, A. (2002). LeCPK1, a calcium-dependent protein kinase from tomato: plasma membrane targeting and biochemical characterization. Plant Physiol. 129, 156-168Journal LinkAbstract (in PubMed)
Strassner, J., Huet, Y., and Schaller, A. (2002) Cloning of tomato proteases by direct selection in yeast for enzymes that cleave the polypeptide wound signal systemin. In: Induced Resistance in Plants against Insects and Diseases. IOBC/wprs Bull. 25, 159-163.Journal LinkAbstract (PubMed)
Schaller, A. (2001). Bioactive peptides as signal molecules in plant defense, growth, and development. In: Studies in Natural Products Chemistry: Bioactive Natural Products (Part F), Vol. 25; Atta-Ur-Rahman, Ed.; Elsevier, Amsterdam, pp. 367-411Journal LinkAbstract (in PubMed)
Zheng, Y., Massey, V., Schaller, A., Palfey, B.A., Carey, P.A. (2001). Comparison of resonance Raman spectra of flavin 3,4-dihydroxybenzoate charge-transfer complexes in three flavoenzymes. J. Raman Spectrosc. 32, 579-586.Journal LinkAbstract (RG)
Hauser, F., Strassner, J., and Schaller, A. (2001) Cloning, expression, and characterization of tomato (Lycopersicon esculentum) aminopeptidase P. J. Biol. Chem. 276, 31732-31737Journal LinkAbstract (in PubMed)
Breithaupt, C., Strassner, J., Breitinger, U., Huber, R., Macheroux, P., Schaller, A., and Clausen, T. (2001). X-ray structure of 12-oxophytodienoate reductase 1 from tomato provides structural insight into substrate binding and specificity within the family of Old Yellow Enzyme. Structure 9, 419-429.Journal LinkAbstract (PubMed)
Frasson, D. and Schaller, A. (2001). Induction of wound response gene expression by ionophores. Planta 212, 431-435Journal LinkAbstract (in PubMed)
Bischoff, M., Schaller, A., Bieri, F., Kessler, F., Amrhein, N., and Schmid, J. (2001). Molecular characterization of tomato 3-dehydroquinate dehydratase-shikimate:NADP oxidoreductase. Plant Physiol. 125, 1891-1900.Journal LinkAbstract (PubMed)
Vetsch, M., Janzik, I., and Schaller, A. (2000). Characterization of prosystemin expressed in the baculovirus/insect cell system reveals biological activity of the systemin precursor. Planta 211, 91-97Journal LinkAbstract (in PubMed)
Janzik, I., Macheroux, P., Amrhein, N., and Schaller, A. (2000). LeSBT1, a subtilase from tomato plants: overexpression in insect cells, purification, and characterization. J. Biol. Chem. 275, 5193-5199.Journal LinkAbstract (PubMed)
Schaller, A., Roy, P., and Amrhein, N. (2000). Salicylic acid-independent induction of pathogenesis-related gene expression by fusicoccin. Planta 210, 599-606Journal LinkAbstract (in PubMed)
Straßner, J., Fürholz, A., Schaller, F., Macheroux, P., Weiler, E. W., Amrhein, N., and Schaller, A. (1999). Overexpression and characterization of 12-oxophytodienoic acid reductase from tomato, a member of the OYE family. in “Flavins and Flavoproteins, 1999” Ghisla, S. Kroneck, P. Macheroux, P. and Sund, H. eds., Agency for Scientific Publ., Berlin, pp. 655-658.conference proceedings
Straßner, J., Fürholz, A., Macheroux, P., Amrhein, N., and Schaller, A. (1999). A homolog of Old Yellow Enzyme in tomato: Spectral properties and substrate specificity of the recombinant protein. J. Biol. Chem. 274, 35067-35073Journal LinkAbstract (in PubMed)
Macheroux, P., Schmid, J., Amrhein, N., and Schaller, A. (1999). A unique reaction in a common pathway: Mechanism and function of chorismate synthase in the shikimic acid pathway. Planta 207, 325-334.Journal LinkAbstract (PubMed)
Schaller, A., and Oecking, C. (1999). Modulation of plasma membrane H+-ATPase activity differentially activates wound and pathogen defense responses in tomato plants. Plant Cell 11, 263-272Journal LinkAbstract (in PubMed)
Schaller, A. (1999). Oligopeptide signaling and the action of systemin. Plant Mol. Biol. 40, 763-769.Journal pdfAbstract (PubMed)
Meichtry, J., Amrhein, N., and Schaller, A. (1999). Characterization of the subtilase gene family in tomato (Lycopersicon esculentum Mill.). Plant Mol. Biol. 39, 749-760Journal LinkAbstract (in PubMed)
Schaller, A. (1998). Action of proteolysis resistant systemin analogues in wound-signalling. Phytochemistry 47, 605-612.Journal LinkAbstract (PubMed)
Henstrand, J.M., Schaller, A., Braun, M., Amrhein, N. and Schmid, J. (1996). Saccharomyces cerevisiae chorismate synthase has a flavin reductase activity. Mol. Microbiol. 22, 859-866Journal LinkAbstract (in PubMed)
Schaller, A. and Ryan, C.A. (1996): Molecular cloning of a leaf cDNA encoding aspartic protease, a systemic wound response protein. Plant Mol. Biol. 35, 1073-1077.Journal LinkAbstract (PubMed)
Schaller, A. and Ryan, C.A. (1996): Systemin: A polypeptide defense signal in plants. BioEssays 18, 27-33.Journal LinkAbstract (in PubMed)
Schaller, A. and Ryan, C.A. (1995). Cloning of a tomato cDNA (GenBank L38581) encoding the proteolytic subunit of a Clp-like energy dependent protease (PGR95-001). Plant Physiol. 108, 1341.Abstract (JSTOR)
Schaller, A., Bergey, D.R. and Ryan, C.A. (1995): Induction of wound response genes in tomato leaves by bestatin, an inhibitor of amino peptidases. Plant Cell 7, 1893-1898.Journal LinkAbstract (in PubMed)
Schaller, A. and Ryan, C.A. (1994): Identification of a 50-kDa systemin-binding protein in tomato plasma membranes having kex2p-like properties. Proc. Natl. Acad. Sci. USA 91, 11802-11806.Journal LinkAbstract (PubMed)
Schaller, A., Schmid, J. and Amrhein, N. (1992). Plant cDNA similar to a bacterial plasmid partition locus. Plant Physiol. 99, 777-778Journal LinkAbstract (in PubMed)
Amrhein, N., Schaller, A., and Schmid, J. (1992). Shikimate kinase and chorismate synthase from higher plants. in Current Topics in Plant Physiology, Vol. 7: Biosynthesis and Molecular Regulation of amino acids in plants. Singh, B.K., Flores, H.E., Shannon, J.C., eds., ASPP.Abstract
Schmid, J., Schaller, A., Leibinger, U., Boll, W. and Amrhein, N. (1992): The in vitro synthesized tomato shikimate kinase precursor is enzymatically active and is imported and processed to the mature enzyme by isolated chloroplasts. Plant J. 2, 275-383Journal LinkAbstract (in PubMed)
Schaller, A., van Afferden, M., Windhofer, V., Bülow, S., Abel, G., Schmid, J. and Amrhein N. (1991). Purification and characterization of chorismate synthase from Euglena gracilis. Comparison with chorismate synthases from plant and microbial origin. Plant Physiol. 97, 1271-1279.Journal LinkAbstract (PubMed)
Schaller, A., Schmid, J., Leibinger, U. and Amrhein, N. (1991). Molecular cloning and analysis of a cDNA coding for chorismate synthase from the higher plant Corydalis sempervirens. J. Biol. Chem. 266, 21434-21438Journal pdfAbstract (in PubMed)
Schaller, A., Windhofer, V. and Amrhein, N. (1990). Purification of chorismate synthase from a cell suspension culture of the higher plant Corydalis sempervirens. Arch. Biochem. Biophys. 282, 437-442.Journal LinkAbstract (PubMed)