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Novel Cellulose-Binding-Domain Protein in Phytophthora Is Cell Wall Localized

机译:疫霉菌中的新型纤维素结合域蛋白位于细胞壁中

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摘要

Cellulose binding domains (CBD) in the carbohydrate binding module family 1 (CBM1) are structurally conserved regions generally linked to catalytic regions of cellulolytic enzymes. While widespread amongst saprophytic fungi that subsist on plant cell wall polysaccharides, they are absent amongst most plant pathogenic fungal cellulases. A genome wide survey for CBM1 was performed on the highly destructive plant pathogen Phytophthora infestans, a fungal-like Stramenopile, to determine if it harbored cellulolytic enzymes with CBM1. Only five genes were found to encode CBM1, and none were associated with catalytic domains. Surveys of other genomes indicated that the CBM1-containing proteins, lacking other domains, represent a unique group of proteins largely confined to the Stramenopiles. Immunolocalization of one of these proteins, CBD1, indicated that it is embedded in the hyphal cell wall. Proteins with CBM1 domains can have plant host elicitor activity, but tests with Agrobacterium-mediated in planta expression and synthetic peptide infiltration failed to identify plant hypersensitive elicitation with CBD1. A structural basis for differential elicitor activity is proposed.
机译:碳水化合物结合模块家族1(CBM1)中的纤维素结合域(CBD)是结构保守的区域,通常与纤维素分解酶的催化区域相连。尽管在存在于植物细胞壁多糖中的腐生真菌中广泛存在,但在大多数植物病原性真菌纤维素酶中却不存在。在高度破坏性植物病原疫霉(真菌疫霉)上进行了CBM1的全基因组调查,以确定它是否含有CBM1的纤维素分解酶。发现只有五个基因编码CBM1,并且没有一个与催化域相关。对其他基因组的调查表明,缺少其他域的含有CBM1的蛋白质代表了独特的一组蛋白质,主要局限在Stramenopiles中。这些蛋白质之一CBD1的免疫定位表明它嵌入在菌丝细胞壁中。具有CBM1结构域的蛋白质可以具有植物宿主激发子活性,但是农杆菌介导的植物表达和合成肽浸润测试无法识别CBD1对植物的超敏激发作用。提出了差异激发子活性的结构基础。

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