首页> 外文期刊>Proteins: Structure, Function, and Genetics >Modeling, mutagenesis, and structural studies on the fully conserved phosphate-binding loop (loop 8) of triosephosphate isomerase: toward a new substrate specificity.
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Modeling, mutagenesis, and structural studies on the fully conserved phosphate-binding loop (loop 8) of triosephosphate isomerase: toward a new substrate specificity.

机译:建模,诱变和结构研究的磷酸甘油糖异构酶的完全保守的磷酸盐结合环(环8):对新的底物特异性。

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摘要

Loop 8 (residues 232-242) in triosephosphate isomerase (TIM) is a highly conserved loop that forms a tight binding pocket for the phosphate moiety of the substrate. Its sequence includes the fully conserved, solvent-exposed Leu238. The tight phosphate-binding pocket explains the high substrate specificity of TIM being limited to the in vivo substrates dihydroxyacetone-phosphate and D-glyceraldehyde-3-phosphate. Here we use the monomeric variant of trypanosomal TIM for exploring the structural consequences of shortening this loop. The mutagenesis, guided by extensive modeling calculations and followed up by crystallographic characterization, is aimed at widening the phosphate-binding pocket and, consequently, changing the substrate specificity. Two new variants were characterized. The crystal structures of these variants indicate that in monomeric forms of TIM, the Leu238 side-chain is nicely buried in a hydrophobic cluster. Monomeric forms of wild-type dimeric TIM are known to exist transiently as folding intermediates; our structural analysis suggests that in this monomeric form, Leu238 of loop 8 also adopts this completely buried conformation, which explains its full conservation across the evolution. The much wider phosphate-binding pocket of the new variant allows for the development of a new TIM variant with a different substrate specificity.
机译:磷酸三糖异构酶(TIM)中的环8(残基232-242)是高度保守的环,形成底物磷酸部分的紧密结合口袋。它的顺序包括完全保守的,溶剂暴露的Leu238。紧密的磷酸盐结合袋说明TIM的高底物特异性仅限于体内底物磷酸二羟基丙酮和D-甘油醛-3-磷酸。在这里,我们使用锥虫TIM的单体变体来探索缩短该环的结构后果。诱变在大量模型计算的指导下进行,随后通过晶体学表征,旨在扩大磷酸盐结合囊,从而改变底物特异性。表征了两个新变体。这些变体的晶体结构表明,在TIM的单体形式中,Leu238侧链很好地掩埋在疏水簇中。已知野生型二聚体TIM的单体形式作为折叠中间体短暂存在。我们的结构分析表明,在这种单体形式下,环8的Leu238也采用了这种完全掩埋的构象,这说明了其在整个进化过程中的完全保守性。新变体的更广泛的磷酸盐结合口袋可用于开发具有不同底物特异性的新TIM变体。

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