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首页> 外文期刊>Journal of Structural Biology >Structures of catalytic cycle intermediates of the Pyrococcus furiosus methionine adenosyltransferase demonstrate negative cooperativity in the archaeal orthologues
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Structures of catalytic cycle intermediates of the Pyrococcus furiosus methionine adenosyltransferase demonstrate negative cooperativity in the archaeal orthologues

机译:甲硫氨酸甲硫氨酸腺苷转移酶的催化循环中间体的结构表现出古代矫形器中的负合作效应

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Methionine adenosyltransferases catalyse the biosynthesis of S-adenosylmethionine, the primary methyl group donor in biochemical reactions, through the condensation of methionine and ATP. Here, we report the structural analysis of the Pyrococcus furiosus methionine adenosyltransferase (PfMAT) captured in the unliganded, substrate- and product-bound states. The conformational changes taking place during the enzymatic catalytic cycle are allosterically propagated by amino acid residues conserved in the archaeal orthologues to induce an asymmetric dimer structure. The distinct occupancy of the active sites within a PfMAT dimer is consistent with a half-site reactivity that is mediated by a product-induced negative cooperativity. The structures of intermediate states of PfMAT reported here suggest a distinct molecular mechanism for S-adenosylmethionine synthesis in Archaea, likely consequence of the evolutionary pressure to achieve protein stability under extreme conditions.
机译:甲硫氨酸腺苷转移酶通过甲硫氨酸和ATP的缩合催化S-腺苷甲基乙硫氨酸的生物合成,生化反应中的原代甲基供体。 在此,我们报告了在可解覆的基质和产品结合状态下捕获的Pyrococcus Futiosus甲硫氨酸腺苷腺苷转移酶(PFMAT)的结构分析。 在酶促催化循环期间发生的构象变化被氨基酸残基在古代酸盐中保守,以诱导不对称二聚体结构。 PFMAT二聚体内活性位点的明显占据与由产物诱导的负合作效力介导的半部位反应性一致。 据报道,PFMAT中间状态的结构表明,古代S-腺苷聚氨酯合成的不同分子机制,可能在极端条件下实现蛋白质稳定性的蛋白质稳定性的结果。

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