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Biochemistry/Physiology

Some fungi express β-1,3-glucanases similar to thaumatin-like proteins

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Pages 841-848 | Accepted 27 Apr 2000, Published online: 04 Jun 2019

LITERATURE CITED

  • Abad LR, D'Urzo MP, Liu D, Narasimhan ML, Reuveni M, Zhu JK, Niu X, Singh NK, Hasegawa PM, Bressan RA. 1996. Antifungal activity of tobacco osmotin has specificity and involves plasma membrane permeabilization. PI Sci 118: 11–23.
  • Altschul SF, Gish W, Miller W, Myers EW, Lipman DJ. 1990. Basic local alignment search tool. J Mol Biol 215: 403–410.
  • Archambault C, Coloccia G, Kermasha S, Jabaji-Hare S. 1998. Characterization of an endo-1,3-β-D-glucanase produced during the interaction between the mycoparasite Stachybotrys elegans and its host Rhizoctonia solani. Can J Microbiol 44: 989–997.
  • Cabib E, Bowers B. 1971. Chitin and yeast budding. Localization of chitin in yeast bud scars. J Biol Chem 246: 152–159.
  • Datta K, Velazhahan R, Oliva N, Ona I, Mew T, Khush GS, Muthukrishnan S, Datta SK. 1999. Over-expression of the cloned rice thaumatin-like protein (PR-5) gene in transgenic rice plants enhances environmental friendly resistance to Rhizoctonia solani causing sheath blight disease. Theor Appl Genet 98: 1138–1145.
  • Dave RS, Mitra RK. 1998. A low temperature induced apoplastic protein isolated from Arachis hypogaea. Phyto-chemistry 49: 2207–2213.
  • Dudler R, Mauch F, Reimmann C. 1994. Thaumatin-like protein. In: Witty M, Higginbotham JD, eds. Thaumatin. Boca Raton: CRC Press. p 193–199.
  • Fils-Lycaon BR, Wiersma PA, Eastwell KC, Sautiere P. 1996. A cherry protein and its gene, abundantly expressed in ripening fruit, have been identified as thaumatin-like. Pl Physiol 111: 269–273.
  • Grenier J, Potvin C, Asselin A. 1993. Barley pathogenesis-related proteins with fungal cell wall lytic activity inhibit the growth of yeasts. Pl Physiol 103: 1277–1283.
  • Grenier J, Potvin C, Asselin A., Trudel J, Asselin A. 1999. Some thaumatin-like proteins hydrolyse polymeric β-1,3-glucans. Pl J 19: 473–480.
  • Hartland RP, Emerson GW, Sulivaonn PA. 1991. A secreted beta-glucan-branching enzyme from Candida albicans. Proc Roy Soc London B Biol Sci 246: 155–160.
  • Hon WC, Griffith M, Mlynarz A, Kwok YA, Yang DSC. 1995. Antifreeze proteins in winter rye are similar to pathogenesis-related proteins. Pl Physiol 109: 879–889.
  • Hshieh LS, Moos Jr M, Lin Y. 1995. Characterization of apple 18 and 31 kD allergens by microsequencing and evaluation of their content during storage and ripening. J Allergy Clin Immunol 96: 960–970.
  • Iglesias RG, Nicolas G, Babiano MJ. 1999. Characterization of a cDNA encoding a thaumatin-like protein from Pseudotsuga menziesii. Pl Physiol 119: 1149.
  • Inschlag C, Hoffmann-Sommergruber K, O'Riordain G, Ahorn H, Ebner C, Scheiner O, Breiteneder H. 1998. Biochemical characterization of Pru a 2, a 23-kD thaumatin-like protein representing a potential major allergen in cherry (Prunus avium). Int Arch Allergy Immunol 116: 22–28.
  • Jensen-Jarolim E, Sautner B, Leitner A, Grimm R, Scheiner O, Ebner C, Breiteneder H. 1998. Bell peppers (Capsicum annuum) express allergens (profilin, pathogenesis-related protein P23 and Bet v1) depending on the horticultural strain. Int Arch Allergy Immunol 116: 103–109.
  • Jue CK, Lipke PN. 1985. Determination of reducing sugars in the nanomole range with tetrazolium blue. J Biochem Biophys Meth 11: 109–115.
  • Kang HG, Fang Y, Sing KB. 1999. Technical advance: a glucocorticoid-inducible transcription system causes severe growth defects in Arabidopsis and induces defense-related genes. Pl J 20: 127–133.
  • King GJ, Turner VA, Hussey CE Jr, Wurtele ES, Lee SM. 1988. Isolation and characterization of a tomato cDNA clone which codes for a salt-induced protein. Pl Mol Biol 10: 401–412.
  • Kitajima S, Sato F. 1999. Plant pathogenesis-related proteins: molecular mechanisms of gene expression and protein function. J Biochem 125: 1–8.
  • Kuboyama T. 1998. A novel thaumatin-like protein gene of tobacco is specifically expressed in the transmitting tissue of stigma and style. Sex PI Reprod 11: 251–256.
  • Mayer RT, McCollum TG, Niedz RP, Hearn CJ, McDonald RE, Berdis E, Doostdar H. 1996. Characterization of seven basic endochitinases isolated from cell cultures of Citrus sinensis (L.). Planta 200: 289–295.
  • Nikolskaya AN, Pitkin JW, Schaeffer HJ, Ahn JH, Walton JD. 1998. EXGlp, a novel exo-β-1,3-glucanase from the fungus Cochliobolus carbonum contains a repeated motif present in other proteins that interact with polysaccharides. Biochem Biophys Acta 1425: 632–636.
  • Noronha EF, Ulhoa CJ. 1996. Purification and characterization of an endo-β-1,3-glucanase from Trichoderma harzianum. Can J Microbiol 42: 1039–1044.
  • Pan CH, Lee EA, Chae YA, Kim SI. 1999. Purification of chitinolytic protein from Rehmannia glutinosa showing N-terminal amino acid sequence similarity to thaumatin-like proteins. Biosci Biotechnol Biochem 63: 1138–1140.
  • Pitson SM, Seviour RJ, McDougall BM, Woodward JR, Stone BA. 1995. Purification and characterization of three extracellular (1→3)-β-D-glucan glucohydrolases from filamentous fungus Acremonium persicinum. Biochem J 308: 733–741.
  • Roberts WJ, Selitrennikoff CP. 1990. Zeamatin, an antifungal protein from maize with membrane-permeabilizing activity. J Gen Microbiol 136: 1771–1778.
  • Salcedo G, Diaz-Perales A, Sanchez-Monge R. 1999. Fruit allergy: plant defence proteins as novel potential panallergens. Clin Exp Allergy 29: 1158–1160.
  • Salzman RA, Tikhonova I, Bordelon BP, Hasegawa PM, Bressan RA. 1998. Coordinate accumulation of antifungal proteins and hexoses constitutes a developmentally controlled defense response during fruit ripening in grape. Pl Physiol 117: 465–472.
  • Sassa H, Hirano H. 1998. Style-specific and developmentally regulated accumulation of a glycosylated thaumatin/PR-5-like protein in Japanese pear (Pyrus serotina Rehd). Planta 205: 514–521.
  • Takemoto D, Furuse K, Doke N, Kawakita K. 1997. Identification of chitinase and osmotin-like protein as actinbinding proteins in suspension-cultured potato cells. Pl Cell Physiol 38: 441–448.
  • Trudel J, Asselin A. 1994. Protein purification for microsequencing by sequential native and denaturing Polyacrylamide gel electrophoresis: application to one chitinase. Anal Biochem 221: 214–216.
  • Trudel J, Asselin A., Grenier J, Asselin A. 1998a. Detection of enzymes active on various β-1,3-glucans after denaturing Polyacrylamide gel electrophoresis. Electrophoresis 19: 1788–1792.
  • Trudel J, Asselin A., Grenier J, Asselin A., Potvin C, Asselin A. 1998b. Several thaumatin-like proteins bind to β-1,3-glucans. PI Physiol 118: 1431–1438.
  • van Loon LC, van Strien EA. 1999. The families of pathogenesis-related proteins, their activities, and comparative analysis of PR-1 type proteins. Physiol Mol Pl Pathol 55: 85–97.
  • Wang X, Zafian P, Choudhary M, Lawton M. 1996. The PR5K receptor protein kinase from Arabidobsis thaliana is structurally related to a family of plant defense proteins. Proc Nad Acad Sei USA 93: 2598–2602.
  • Woloshuk CP, Meulenhoff JS, Sela-Buurlage M, van den Elzen PJM, Cornelissen BJC. 1991. Pathogen-induced proteins with inhibitory activity toward Phytophthora infestans. Pl Cell 3: 619–628.
  • Ye XY, Wang HX, Ng TB. 1999. First chromatographic isolation of an antifungal thaumatin-like protein from French bean legumes and demonstration of its antifungal activity. Biochem Biophys Res Commun 263: 130–134.
  • Yun DJ, Bressan RA, Hasegawa PM. 1997. Plant antifungal proteins. In: Janick J, ed. Plant breeding reviews. Vol. 14. New York: John Wiley and Sons Inc. p 39–88.
  • Yun DJ, Bressan RA, Hasegawa PM., Ibeas JI, Lee H, Coca MA, Narasimhan ML, Uesono Y, Hasegawa PM, Pardo JM, Bressan RA. 1998. Osmotin, a plant antifungal protein, subverts signal transduction to enhance fungal cell susceptibility. Mol Cell 1: 807–817.

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