首页> 外文OA文献 >Structural analysis of xylanase inhibitor protein I (XIP-I), a proteinaceous xylanase inhibitor from wheat (Triticum aestivum, var. Soisson).
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Structural analysis of xylanase inhibitor protein I (XIP-I), a proteinaceous xylanase inhibitor from wheat (Triticum aestivum, var. Soisson).

机译:木聚糖酶抑制剂蛋白I(XIP-1)的结构分析,这是一种小麦的蛋白质木聚糖酶抑制剂(Triticum aestivum,var。Soisson)。

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摘要

A novel class of proteinaceous inhibitors exhibiting specificity towards microbial xylanases has recently been discovered in cereals. The three-dimensional structure of xylanase inhibitor protein I (XIP-I) from wheat (Triticum aestivum, var. Soisson) was determined by X-ray crystallography at 1.8 A (1 A=0.1 nm) resolution. The inhibitor possesses a (beta/alpha)(8) barrel fold and has structural features typical of glycoside hydrolase family 18, namely two consensus regions, approximately corresponding to the third and fourth barrel strands, and two non-proline cis -peptide bonds, Ser(36)-Phe and Trp(256)-Asp (in XIP-I numbering). However, detailed structural analysis of XIP-I revealed several differences in the region homologous with the active site of chitinases. The catalytic glutamic acid residue of family 18 chitinases [Glu(127) in hevamine, a chitinase/lysozyme from the rubber tree (Hevea brasiliensis)] is conserved in the structure of the inhibitor (Glu(128)), but its side chain is fully engaged in salt bridges with two neighbouring arginine residues. Gly(81), located in subsite -1 of hevamine, where the reaction intermediate is formed, is replaced by Tyr(80) in XIP-I. The tyrosine side chain fills the subsite area and makes a strong hydrogen bond with the side chain of Glu(190) located at the opposite side of the cleft, preventing access of the substrate to the catalytic glutamic acid. The structural differences in the inhibitor cleft structure probably account for the lack of activity of XIP-I towards chitin.
机译:最近在谷物中发现了一类新型的对微生物木聚糖酶表现出特异性的蛋白质抑制剂。通过X射线晶体学以1.8A(1A = 0.1nm)的分辨率确定来自小麦(Triticum aestivum,var.Soisson)的木聚糖酶抑制剂蛋白I(XIP-1)的三维结构。该抑制剂具有(beta / alpha)(8)桶状折叠,并具有糖苷水解酶家族18的典型结构特征,即两个共有区域,大约对应于第三和第四个桶状链,以及两个非脯氨酸顺肽键, Ser(36)-Phe和Trp(256)-Asp(以XIP-1编号)。然而,对XIP-1的详细结构分析揭示了在与几丁质酶活性位点同源的区域中的一些差异。 18壳聚糖酶的催化谷氨酸残基[七胺中的Glu(127),来自橡胶树(巴西橡胶树)的几丁质酶/溶菌酶]在抑制剂(Glu(128))的结构中是保守的,但其侧链是与两个相邻的精氨酸残基完全参与盐桥。位于七胺的亚位点-1的Gly(81)(在其中形成反应中间体)在XIP-1中被Tyr(80)取代。酪氨酸侧链充满了子位点区域,并与位于裂缝对侧的Glu(190)的侧链形成了牢固的氢键,从而阻止了底物接近催化谷氨酸。抑制剂裂缝结构的结构差异可能是XIP-1对甲壳质缺乏活性的原因。

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