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Identification of novel catalytic features of endo-β-14-glucanase produced by mulberry longicorn beetle Apriona germari

机译:桑树长角甲虫Apriona gerari产生的内切β-14-葡聚糖酶的新型催化特征的鉴定

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摘要

Mulberry longicorn beetle, Apriona germari, has been reported to produce two endo-β-1,4-glucanases or AgEGases (accession Nos. and ). AgEGase sequence contains catalytic motif (amino acid residues 37~48), which is the characteristic of family Glycohydrolase 45 and is identified as the substrate binding site. The application of bioinformatics approaches includes sequence analysis, structural modeling and inhibitor docking to relate the structure and function of AgEGases. We have dissected the sequence and structure of AgEGase catalytic motif and compared it with crystal structure of Humicola insolens endoglucanases V. The results show an involvement of sulfur containing amino acid residues in the active site of the enzyme. Cys residues and position of disulfide bonds are highly conserved between the two structures of endoglucanases of A. germari. Surface calculation of AgEGase structure in the absence of Cys residues reveals greater accessibility of the catalytic site to the substrate involving Asp42, a highly conserved residue. For the inhibition study, tannin-based structure was docked into the catalytic site of AgEGase using ArgusLab 4.0 and it resulted in a stable complex formation. It is suggested that the inhibition could occur through formation of a stable transition state analog-enzyme complex with the tannin-based inhibitor, as observed with other insect cellulases in our laboratory.
机译:据报道,桑树长茎金龟甲虫Apriona germari可产生两种内切β-1,4-葡聚糖酶或AgEGase(登录号和)。 AgEGase序列含有催化基序(氨基酸残基37〜48),是糖基水解酶45家族的特征,被鉴定为底物结合位点。生物信息学方法的应用包括序列分析,结构建模和抑制剂对接,以关联AgEGase的结构和功能。我们已经解剖了AgEGase催化基序的序列和结构,并将其与腐质霉腐殖质内切葡聚糖酶V的晶体结构进行了比较。结果表明该酶的活性位点涉及到含硫氨基酸残基。 Cys残基和二硫键的位置在A.gerari内切葡聚糖酶的两个结构之间高度保守。在不存在Cys残基的情况下,AgEGase结构的表面计算表明,催化位点对涉及高度保守残基Asp42的底物的可及性更高。为了进行抑制研究,使用ArgusLab 4.0将基于单宁的结构对接至AgEGase的催化位点,并形成稳定的复合物。如在我们实验室中的其他昆虫纤维素酶所观察到的,表明该抑制作用可通过与基于单宁的抑制剂形成稳定的过渡态类似物-酶复合物而发生。

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