首页> 外文期刊>Biochemistry >A CONFORMATIONAL CHANGE IN THE METHYLTRANSFERASE FROM CLOSTRIDIUM THERMOACETICUM FACILITATES THE METHYL TRANSFER FROM (6S)-METHYLTETRAHYDROFOLATE TO THE CORRINOID IRON-SULFUR PROTEIN IN THE ACETYL-COA PATHWAY
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A CONFORMATIONAL CHANGE IN THE METHYLTRANSFERASE FROM CLOSTRIDIUM THERMOACETICUM FACILITATES THE METHYL TRANSFER FROM (6S)-METHYLTETRAHYDROFOLATE TO THE CORRINOID IRON-SULFUR PROTEIN IN THE ACETYL-COA PATHWAY

机译:嗜热梭状芽孢杆菌甲基转移酶的构象变化有助于从乙酰-COA途径中将(6S)-甲基四氢叶酸转移到Corrininoid铁-硫蛋白

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摘要

The methyltetrahydrofolate:corrinoid/iron-sulfur protein methyltransferase (MeTr) from Clostridium thermoaceticum catalyzes the methylation of a corrinoid/iron-sulfur protein (C/Fe-SP) by the N-5 methyl group of (6S)-methyltetrahydrofolate (CH3-H(4)folate). This is an important reaction in the reductive acetyl-CoA pathway. The forward and reverse reactions of MeTr have a pH dependence that appears to reflect protonation of a group on the protein [Zhao, S., Roberts, D. L., & Ragsdale, S. W. (1995) Biochemistry 34, 15075-15083]. In the work reported here, fluorescence and rapid reaction kinetics were used to demonstrate that this protonation elicits a rate-limiting conformational change. As the pH was lowered, the emission maximum for intrinsic tryptophan fluorescence underwent a red shift (pK(a) = 5.4) and the emission intensity increased (pK(a) = 5.1). The extrinsic fluorescence probe, 4,4'-bis-1-phenylamino-8-napthalenesulfonate (bis-ANS) was used to report on the conformational change, The bis-ANS fluorescence was strongly enhanced upon binding MeTr, As the pH was decreased, the fluorescence was further enhanced and the emission maximum underwent a 14 nm blue shift (pK(a) = 5.0). By stopped-flow fluorescence studies, it was shown that these fluorescence changes occur at rates similar to the k(cat) for the MeTr reaction and thus reflect catalytically competent events. The combined results indicate that CH3-H(4)folate binds to a hydrophobic region in MeTr that includes a tryptophan residue(s). MeTr undergoes a pH-dependent conformational change that exposes this region to solvent and facilitates substrate binding.
机译:来自热乙酸梭菌的甲基四氢叶酸:类皮质醇/铁硫蛋白甲基转移酶(MeTr)通过(6S)-甲基四氢叶酸(CH3-)的N-5甲基催化类固醇/铁硫蛋白(C / Fe-SP)的甲基化H(4)叶酸)。这是还原性乙酰辅酶A途径中的重要反应。 MeTr的正向和反向反应具有pH依赖性,似乎反映了该基团在蛋白质上的质子化[Zhao,S.,Roberts,D.L。,和Ragsdale,S.W。(1995)Biochemistry 34,15075-15083]。在这里报道的工作中,荧光和快速反应动力学被用来证明这种质子化引起速率限制的构象变化。随着pH降低,固有色氨酸荧光的最大发射光发生红移(pK(a)= 5.4),发射强度增加(pK(a)= 5.1)。使用外部荧光探针4,4'-双-1-苯基氨基-8-萘磺酸盐(bis-ANS)报告构象变化。随着MeTr的结合,pH降低,bis-ANS荧光增强。 ,荧光进一步增强,并且发射最大值经历了14 nm的蓝移(pK(a)= 5.0)。通过停止流荧光研究,表明这些荧光变化以类似于MeTr反应的k(cat)的速率发生,因此反映了催化活性事件。组合结果表明,CH3-H(4)叶酸与MeTr中包含色氨酸残基的疏水区结合。 MeTr经历了pH依赖的构象变化,该变化使该区域暴露于溶剂中并促进了底物的结合。

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