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首页> 外文期刊>The FEBS journal >Crystal structure of Klebsiella sp. ASR1 phytase suggests substrate binding to a preformed active site that meets the requirements of a plant rhizosphere enzyme.
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Crystal structure of Klebsiella sp. ASR1 phytase suggests substrate binding to a preformed active site that meets the requirements of a plant rhizosphere enzyme.

机译:克雷伯氏菌的晶体结构ASR1植酸酶表明底物与预先形成的活性位点结合,该活性位点符合植物根际酶的要求。

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摘要

The extracellular phytase of the plant-associated Klebsiella sp. ASR1 is a member of the histidine-acid-phosphatase family and acts primarily as a scavenger of phosphate groups locked in the phytic acid molecule. The Klebsiella enzyme is distinguished from the Escherichia coli phytase AppA by its sequence and phytate degradation pathway. The crystal structure of the phytase from Klebsiella sp. ASR1 has been determined to 1.7 A resolution using single-wavelength anomalous-diffraction phasing. Despite low sequence similarity, the overall structure of Klebsiella phytase bears similarity to other histidine-acid phosphatases, such as E. coli phytase, glucose-1-phosphatase and human prostatic-acid phosphatase. The polypeptide chain is organized into an alpha and an alpha / beta domain, and the active site is located in a positively charged cleft between the domains. Three sulfate ions bound to the catalytic pocket of an inactive mutant suggest a unique binding mode for its substrate phytate. Even in the absence of substrate, the Klebsiella phytase is closer in structure to the E. coli phytase AppA in its substrate-bound form than to phytate-free AppA. This is taken to suggest a preformed substrate-binding site in Klebsiella phytase. Differences in habitat and substrate availability thus gave rise to enzymes with different substrate-binding modes, specificities and kinetics.
机译:与植物相关的克雷伯氏菌(Klebsiella sp。)的细胞外植酸酶。 ASR1是组氨酸酸性磷酸酶家族的成员,主要充当锁定在植酸分子中的磷酸基团的清除剂。克雷伯菌酶的序列和植酸盐降解途径与>大肠埃希氏菌植酸酶AppA区分开。 克雷伯菌 sp。植酸酶的晶体结构。已使用单波长异常衍射定相将ASR1确定为1.7 A分辨率。尽管序列相似性很低,但克雷伯氏菌植酸酶的整体结构与其他组氨酸磷酸酶(如E)具有相似性。大肠杆菌植酸酶,葡萄糖-1-磷酸酶和人前列腺酸性磷酸酶。多肽链被组织成一个α和一个α/β结构域,而活性位点位于这些结构域之间带正电荷的裂缝中。与无活性突变体的催化口袋结合的三个硫酸根离子表明其底物植酸盐具有独特的结合方式。即使没有底物,克雷伯氏菌植酸酶在结构上也更接近 E。底物结合形式的大肠杆菌植酸酶AppA比不含肌醇六磷酸的AppA更好。这被认为暗示在克雷伯菌植酸酶中预先形成的底物结合位点。因此,生境和底物可利用性的差异产生了具有不同底物结合模式,特异性和动力学的酶。

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