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The first crystal structures of a family 19 class IV chitinase : the enzyme from Norway spruce

机译:19类IV类几丁质酶的第一个晶体结构:来自挪威云杉的酶

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摘要

Chitinases help plants defend themselves against fungal attack, and play roles in other processes, including development. The catalytic modules of most plant chitinases belong to glycoside hydrolase family 19. We report here x-ray structures of such a module from a Norway spruce enzyme, the first for any family 19 class IV chitinase. The bi-lobed structure has a wide cleft lined by conserved residues; the most interesting for catalysis are Glu113, the proton donor, and Glu122, believed to be a general base that activate a catalytic water molecule. Comparisons to class I and II enzymes show that loop deletions in the class IV proteins make the catalytic cleft shorter and wider; from modeling studies, it is predicted that only three N-acetylglucosamine-binding subsites exist in class IV. Further, the structural comparisons suggest that the family 19 enzymes become more closed on substrate binding. Attempts to solve the structure of the complete protein including the associated chitin-binding module failed, however, modeling studies based on close relatives indicate that the binding module recognizes at most three N-acetylglucosamine units. The combined results suggest that the class IV enzymes are optimized for shorter substrates than the class I and II enzymes, or alternatively, that they are better suited for action on substrates where only small regions of chitin chain are accessible.  Intact spruce chitinase is shown to possess antifungal activity, which requires the binding module; removing this module had no effect on measured chitinase activity.
机译:几丁质酶帮助植物防御真菌侵害,并在其他过程(包括发育)中发挥作用。大多数植物几丁质酶的催化模块属于糖苷水解酶家族19。我们在这里报告了来自挪威云杉酶的此类模块的X射线结构,这是19类IV几丁质酶家族中的第一个。双瓣结构的裂痕较宽,保留了保守的残基。催化最有趣的是质子供体Glu113和Glu122,它们被认为是激活催化水分子的通用碱。与I类和II类酶的比较表明,IV类蛋白中的环缺失使催化裂隙变得更短和更宽。通过建模研究,可以预测,IV类中仅存在3个N-乙酰氨基葡萄糖结合位点。此外,结构比较表明,家族19酶在底物结合时变得更加封闭。尝试解决包括相关的几丁质结合模块的完整蛋白质的结构失败,但是,基于近亲的建模研究表明,结合模块最多识别三个N-乙酰氨基葡萄糖单元。合并的结果表明,与I和II类酶相比,IV类酶针对较短的底物进行了优化,或者,它们更适合于仅可接触几丁质链区域的底物上的作用。完整的云杉几丁质酶显示具有抗真菌活性,需要结合模块。去除该模块对测量的几丁质酶活性没有影响。

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