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The crystal structure of rabbit phosphoglucose isomerase complexed with D-sorbitol-6-phosphate, an analog of the open chain form of D-glucose-6-phosphate

机译:兔磷酸葡萄糖异构酶与D-山梨醇-6-磷酸盐(D-葡萄糖-6-磷酸盐的开链形式的类似物)复合的晶体结构

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摘要

Phosphoglucose isomerase (PGI) catalyzes the isomerization of D-glucose-6-phosphate (G6P) and D-fructose-6-phosphate (F6P) in glycolysis and gluconeogenesis. Analysis of previously reported X-ray crystal structures of PGI without ligand, with the cyclic form of F6P, or with inhibitors that mimic the cis-enediol intermediate led to proposed mechanisms for the ring opening and isomerization steps in the multistep catalytic mechanism. To help complete our model of the overall mechanism, information is needed about the state of PGI between the ring opening and isomerization steps, in other words, a structure of the enzyme complexed with the open form of a substrate or an analog. Here, we report the crystal structure of rabbit PGI complexed with D-sorbitol-6-phosphate (S6P), an analog of the open chain form of G6P, at 2.0 Å resolution. As was seen in the PGI/F6P structure, a helix containing amino acid residues 512–520 is found in the “out” position, which provides sufficient space in the active site for a substrate in its cyclic form and which is probably the location of that helix just after ring opening (or just before ring closure). However, the S6P ligand is in an extended conformation, as was seen previously with ligands that mimic the cis-enediol intermediate. The extended conformation enables the ligand to interact with Glu357, which transfers a proton during the isomerization step. The PGI/S6P structure represents the conformation of the enzyme and substrate between the ring opening (or ring closing) step and the isomerization step and helps to complete the model for PGI’s catalytic mechanism.
机译:磷酸葡萄糖异构酶(PGI)在糖酵解和糖异生中催化D-葡萄糖-6-磷酸酯(G6P)和D-果糖6-磷酸酯(F6P)的异构化。对先前报道的没有配体,具有环状形式的F6P或具有模拟顺式-烯二醇中间体的抑制剂的PGI的X射线晶体结构的分析导致提出了多步催化机理中开环和异构化步骤的机理。为了帮助完善我们的总体机理模型,需要有关开环和异构化步骤之间PGI状态的信息,换句话说,就是与底物或类似物的开放形式复合的酶的结构。在这里,我们报道了以2.0Å分辨率与D-山梨糖醇6-磷酸酯(S6P)(G6P的开链形式的类似物)复合的兔PGI的晶体结构。如在PGI / F6P结构中所见,在“出”位置发现了一个包含氨基酸残基512-520的螺旋,这为环状结构的底物在活性位点中提供了足够的空间,并且可能是开环后(或闭环前)的螺旋线。但是,S6P配体处于扩展构象,如先前在模拟顺式-烯二醇中间体的配体中所见。扩展的构象使配体与Glu357相互作用,后者在异构化步骤中转移质子。 PGI / S6P结构代表开环(或闭环)步骤和异构化步骤之间酶和底物的构象,有助于完成PGI催化机理的模型。

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