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嗜热脂肪芽孢杆菌中一种具有广泛特异性磷酸酶活性的辅因子依赖性磷酸甘油酸变位酶同源物的结构与作用机制

Structure and mechanism of action of a cofactor-dependent phosphoglycerate mutase homolog from Bacillus stearothermophilus with broad specificity phosphatase activity.

作者信息

Rigden Daniel J, Mello Luciane V, Setlow Peter, Jedrzejas Mark J

机构信息

National Centre of Genetic Resources and Biotechnology, Cenargen/Embrapa, S.A.I.N. Parque Rural, Final W5, Asa Norte, Brasília, 70770-900, Brazil.

出版信息

J Mol Biol. 2002 Feb 1;315(5):1129-43. doi: 10.1006/jmbi.2001.5290.

Abstract

The crystal structure of Bacillus stearothermophilus PhoE (originally termed YhfR), a broad specificity monomeric phosphatase with a molecular mass of approximately 24 kDa, has been solved at 2.3 A resolution in order to investigate its structure and function. PhoE, already identified as a homolog of a cofactor-dependent phosphoglycerate mutase, shares with the latter an alpha/beta/alpha sandwich structure spanning, as a structural excursion, a smaller subdomain composed of two alpha-helices and one short beta-strand. The active site contains residues from both the alpha/beta/alpha sandwich and the sub-domain. With the exception of the hydrophilic catalytic machinery conserved throughout the cofactor-dependent phosphoglycerate mutase family, the active-site cleft is strikingly hydrophobic. Docking studies with two diverse, favored substrates show that 3-phosphoglycerate may bind to the catalytic core, while alpha-napthylphosphate binding also involves the hydrophobic portion of the active-site cleft. Combining a highly favorable phospho group binding site common to these substrate binding modes and data from related enzymes, a catalytic mechanism can be proposed that involves formation of a phosphohistidine intermediate on His10 and likely acid-base behavior of Glu83. Other structural factors contributing to the broad substrate specificity of PhoE can be identified. The dynamic independence of the subdomain may enable the active-site cleft to accommodate substrates of different sizes, although similar motions are present in simulations of cofactor-dependent phosphoglycerate mutases, perhaps favoring a more general functional role. A significant number of entries in protein sequence databases, particularly from unfinished microbial genomes, are more similar to PhoE than to cofactor-dependent phosphoglycerate mutases or to fructose-2,6-bisphosphatases. This PhoE structure will therefore serve as a valuable basis for inference of structural and functional characteristics of these proteins.

摘要

嗜热脂肪芽孢杆菌PhoE(最初称为YhfR)是一种分子量约为24 kDa的广谱特异性单体磷酸酶,为了研究其结构和功能,已解析出其2.3 Å分辨率的晶体结构。PhoE已被鉴定为一种依赖辅因子的磷酸甘油酸变位酶的同源物,与后者共享一个α/β/α三明治结构,作为一种结构偏移,该结构跨越一个由两个α螺旋和一条短β链组成的较小亚结构域。活性位点包含来自α/β/α三明治和亚结构域的残基。除了在整个依赖辅因子的磷酸甘油酸变位酶家族中保守的亲水性催化机制外,活性位点裂缝非常疏水。对两种不同的、合适的底物进行对接研究表明,3-磷酸甘油酸可能与催化核心结合,而α-萘基磷酸的结合也涉及活性位点裂缝的疏水部分。结合这些底物结合模式共有的高度有利的磷酸基团结合位点以及来自相关酶的数据,可以提出一种催化机制,该机制涉及在His10上形成磷酸组氨酸中间体以及Glu83可能的酸碱行为。可以确定其他有助于PhoE广泛底物特异性的结构因素。亚结构域的动态独立性可能使活性位点裂缝能够容纳不同大小的底物,尽管在依赖辅因子的磷酸甘油酸变位酶的模拟中也存在类似的运动,这可能有利于更普遍的功能作用。蛋白质序列数据库中的大量条目,特别是来自未完成的微生物基因组的条目,与PhoE的相似性高于与依赖辅因子的磷酸甘油酸变位酶或果糖-2,6-二磷酸酶的相似性。因此,这种PhoE结构将作为推断这些蛋白质的结构和功能特征的有价值的基础。

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