阿拉伯糖5-磷酸共价抑制转醛缩酶。

Samuel H Light, Wayne F Anderson
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引用次数: 8

摘要

5-磷酸阿拉伯糖(A5P)是酮己糖果糖6-磷酸(F6P)的醛戊糖版本,具有相同的立体化学结构,但缺乏1-碳和1-羟基对应的原子。尽管F6P的活性部分结构相似且保守,但F6P作为底物,而A5P据报道是转醛缩酶的抑制剂。为了解决缺乏A5P反应性的问题,我们确定了土拉菌转醛醇酶与A5P复合物的晶体结构。该结构揭示了A5P与F6P一样,与活性位点Lys135形成共价席夫碱。与F6P不同,A5P的结合不能取代有序的活性位点水分子。保留这些水分需要在a5p蛋白连接上改变构象,这可能会阻碍反应性。本文的研究结果显示了A5P抑制的基础,并提出了一种竞争性的、可逆的共价转醛醇酶调节的不寻常机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Arabinose 5-phosphate covalently inhibits transaldolase.

Arabinose 5-phosphate (A5P) is the aldopentose version of the ketohexose fructose 6-phosphate (F6P), having identical stereochemistry but lacking atoms corresponding to the 1-carbon and 1-hydroxyl. Despite structural similarity and conservation of the reactive portion of F6P, F6P acts as a substrate whereas A5P is reported to be an inhibitor of transaldolase. To address the lack of A5P reactivity we determined a crystal structure of the Francisella tularensis transaldolase in complex with A5P. This structure reveals that like F6P, A5P forms a covalent Schiff base with active site Lys135. Unlike F6P, A5P binding fails to displace an ordered active site water molecule. Retaining this water necessitates conformational changes at the A5P-protein linkage that possibly hinder reactivity. The findings presented here show the basis of A5P inhibition and suggest an unusual mechanism of competitive, reversible-covalent transaldolase regulation.

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