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Crystal structure of a polyglycine hydrolase determined using a RoseTTAFold model

机译:使用 RoseTTAFold 模型测定的聚甘氨酸水解酶的晶体结构

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Polyglycine hydrolases (PGHs) are secreted fungal proteases that cleave the polyglycine linker of Zea mays ChitA, a defensive chitinase, thus overcoming one mechanism of plant resistance to infection. Despite their importance in agriculture, there has been no previous structural characterization of this family of proteases. The objective of this research was to investigate the proteolytic mechanism and other characteristics by structural and biochemical means. Here, the first atomic structure of a polyglycine hydrolase was identified. It was solved by X‐ray crystallography using a RoseTTAFold model, taking advantage of recent technical advances in structure prediction. PGHs are composed of two domains: the N‐ and C‐domains. The N‐domain is a novel tertiary fold with an as‐yet unknown function that is found across all kingdoms of life. The C‐domain shares structural similarities with class C β‐lactamases, including a common catalytic nucleophilic serine. In addition to insights into the PGH family and its relationship to β‐lactamases, the results demonstrate the power of complementing experimental structure determination with new computational techniques.
机译:聚甘氨酸水解酶(PGHs)分泌的真菌蛋白酶能分裂聚甘氨酸的链接器玉蜀黍契塔,防守几丁质酶,因此克服植物抗性机制之一感染。农业,没有以前的家庭的结构特征蛋白酶。调查和其他蛋白水解机制通过结构和生化特征的意思。聚甘氨酸水解酶被发现。解决了X射线晶体学使用RoseTTAFold模型,利用最近的技术进步在结构预测。是由两个领域:N》C的域。与一个未知函数,发现在生活的所有王国。与C类结构相似之处地理β内酰胺酶,包括常见的催化亲核丝氨酸。PGH家族及其关系地理β内酰胺酶,结果展示力量补充实验结构确定新的计算技术。

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