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Identification of an endo-β-14-d-Xylanase from Magnaporthe grisea by Gene Knockout Analysis Purification and Heterologous Expression

机译:通过基因敲除纯化和异源表达鉴定稻瘟病菌内切β-14-d-木聚糖酶

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摘要

Magnaporthe grisea, a destructive ascomycetous pathogen of rice, secretes cell wall-degrading enzymes into a culture medium containing purified rice cell walls as the sole carbon source. From M. grisea grown under the culture conditions described here, we have identified an expressed sequenced tag, XYL-6, a gene that is also expressed in M. grisea-infected rice leaves 24 h postinoculation with conidia. This gene encodes a protein about 65% similar to endo-β-1,4-d-glycanases within glycoside hydrolase family GH10. A M. grisea knockout mutant for XYL-6 was created, and it was shown to be as virulent as the parent strain in infecting the rice host. The proteins secreted by the parent strain and by the xyl-6Δ mutant were each fractionated by liquid chromatography, and the collected fractions were assayed for endo-β-1,4-d-glucanase or endo-β-1,4-d-xylanase activities. Two protein-containing peaks with endo-β-1,4-d-xylanase activity secreted by the parent strain are not detectable in the column eluant of the proteins secreted by the mutant. The two endoxylanases (XYL-6α and XYL-6β) from the parent were each purified to homogeneity. N-terminal amino acid sequencing indicated that XYL-6α is a fragment of XYL-6β and that XYL-6β is identical to the deduced protein sequence encoded by the XYL-6 gene. Finally, XYL-6 was introduced into Pichia pastoris for heterologous expression, which resulted in the purification of a fusion protein, XYL-6H, from the Pichia pastoris culture filtrate. XYL-6H is active in cleaving arabinoxylan. These experiments unequivocally established that the XYL-6 gene encodes a secreted endo-β-1,4-d-xylanase.
机译:稻瘟病菌(Magnaporthe grisea)是水稻的一种破坏性子囊病原体,能将细胞壁降解酶分泌到含有纯化的水稻细胞壁作为唯一碳源的培养基中。从此处描述的培养条件下生长的稻瘟病菌中,我们鉴定了表达的测序标签XYL-6,该基因在用分生孢子接种24小时后也被在稻瘟病菌感染的稻叶中表达。该基因编码的蛋白质与糖苷水解酶家族GH10中的内切β-1,4-d-聚糖酶相似,约为65%。产生了用于XYL-6的M. grisea基因敲除突变体,在感染水稻寄主中它表现出与亲本菌株一样强的毒性。分别通过液相色谱法分离由亲本菌株和xyl-6Δ突变体分泌的蛋白质,并对收集的级分进行内-β-1,4-d-葡聚糖酶或内-β-1,4-d-内切酶的测定。木聚糖酶活性。在由突变体分泌的蛋白质的柱洗脱液中,未检测到两个由亲本菌株分泌的具有内-β-1,4-d-木聚糖酶活性的含蛋白质的峰。将来自亲本的两种内切木聚糖酶(XYL-6α和XYL-6β)分别纯化至均质。 N末端氨基酸测序表明XYL-6α是XYL-6β的片段,并且XYL-6β与由XYL-6基因编码的推导的蛋白质序列相同。最后,将XYL-6引入巴斯德毕赤酵母中进行异源表达,从而从巴斯德毕赤酵母培养滤液中纯化出融合蛋白XYL-6H。 XYL-6H具有裂解阿拉伯木聚糖的活性。这些实验明确地确定了XYL-6基因编码一种分泌的 endo -β-1,4-d-木聚糖酶。

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