首页> 美国卫生研究院文献>Journal of Bacteriology >A Novel Cellulosomal Scaffoldin from Acetivibrio cellulolyticus That Contains a Family 9 Glycosyl Hydrolase
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A Novel Cellulosomal Scaffoldin from Acetivibrio cellulolyticus That Contains a Family 9 Glycosyl Hydrolase

机译:一个新的纤维素支架素从纤溶纤维素包含一个家族9糖基水解酶。

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摘要

A novel cellulosomal scaffoldin gene, termed cipV, was identified and sequenced from the mesophilic cellulolytic anaerobe Acetivibrio cellulolyticus. Initial identification of the protein was based on a combination of properties, including its high molecular weight, cellulose-binding activity, glycoprotein nature, and immuno-cross-reactivity with the cellulosomal scaffoldin of Clostridium thermocellum. The cipV gene is 5,748 bp in length and encodes a 1,915-residue polypeptide with a calculated molecular weight of 199,496. CipV contains an N-terminal signal peptide, seven type I cohesin domains, an internal family III cellulose-binding domain (CBD), and an X2 module of unknown function in tandem with a type II dockerin domain at the C terminus. Surprisingly, CipV also possesses at its N terminus a catalytic module that belongs to the family 9 glycosyl hydrolases. Sequence analysis indicated the following. (i) The repeating cohesin domains are very similar to each other, ranging between 70 and 90% identity, and they also have about 30 to 40% homology with each of the other known type I scaffoldin cohesins. (ii) The internal CBD belongs to family III but differs from other known scaffoldin CBDs by the omission of a 9-residue stretch that constitutes a characteristic loop previously associated with the scaffoldins. (iii) The C-terminal type II dockerin domain is only the second such domain to have been discovered; its predicted “recognition codes” differ from those proposed for the other known dockerins. The putative calcium-binding loop includes an unusual insert, lacking in all the known type I and type II dockerins. (iv) The X2 module has about 60% sequence homology with that of C. thermocellum and appears at the same position in the scaffoldin. (v) Unlike the other known family 9 catalytic modules of bacterial origin, the CipV catalytic module is not accompanied by a flanking helper module, e.g., an adjacent family IIIc CBD or an immunoglobulin-like domain. Comparative sequence analysis of the CipV functional modules with those of the previously sequenced scaffoldins provides new insight into the structural arrangement and phylogeny of this intriguing family of microbial proteins. The modular organization of CipV is reminiscent of that of the CipA scaffoldin from C. thermocellum as opposed to the known scaffoldins from the mesophilic clostridia. The phylogenetic relationship of the different functional modules appears to indicate that the evolution of the scaffoldins reflects a collection of independent events and mechanisms whereby individual modules and other constituents are incorporated into the scaffoldin gene from different microbial sources.
机译:鉴定了一个新的称为cipV的纤维素支架基因,并从中温纤维素厌氧厌氧杆菌乙酰纤维素中测序。该蛋白的初步鉴定基于多种特性的组合,包括其高分子量,纤维素结合活性,糖蛋白性质以及与热纤梭菌的纤维素支架素的免疫交叉反应性。 cipV基因的长度为5748 bp,编码1915个残基多肽,计算分子量为199496。 CipV包含一个N端信号肽,七个I型黏附素结构域,一个内部III类纤维素结合结构域(CBD)和一个未知功能的X2模块,在C端与一个II型dockerin结构域串联。令人惊讶地,CipV还在其N末端具有属于家族9糖基水解酶的催化模块。序列分析表明以下。 (i)重复的粘着蛋白结构域彼此非常相似,在70至90%同一性之间,并且它们与其他已知的I型支架蛋白粘着蛋白中的每一个也具有约30至40%的同源性。 (ii)内部CBD属于III族,但与其他已知的支架CBD不同之处在于,它省略了9个残基的序列,构成了先前与支架相关的特征性环。 (iii)C终端II型dockerin域只是被发现的第二个此类域;其预测的“识别码”与其他已知的dockerins所提议的识别码不同。推定的钙结合环包括一个不寻常的插入物,所有已知的I型和II型码头工人都缺乏。 (iv)X2模块与热纤梭菌具有约60%的序列同源性,并出现在支架蛋白的相同位置。 (v)不同于其他已知的细菌起源的家族9催化模块,CipV催化模块不伴有侧翼辅助模块,例如相邻的IIIc CBD家族或免疫球蛋白样结构域。 CipV功能模块与先前已测序的支架蛋白的功能模块的比较序列分析为这一有趣的微生物蛋白家族的结构排列和系统发育提供了新的见识。 CipV的模块化组织让人想起来自热纤梭菌的CipA支架蛋白,而不是来自嗜温梭菌的已知支架蛋白。不同功能模块的系统发生关系似乎表明支架蛋白的进化反映了独立事件和机制的集合,由此各个模块和其他成分从不同微生物来源掺入到支架蛋白基因中。

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