首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Idiosyncratic Helix-Turn-Helix Motif in Methanosarcina barkeri Seryl-tRNA Synthetase Has a Critical Architectural Role
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Idiosyncratic Helix-Turn-Helix Motif in Methanosarcina barkeri Seryl-tRNA Synthetase Has a Critical Architectural Role

机译:巴氏甲烷菌的异质螺旋-螺旋-螺旋基序 Seryl-tRNA合成酶具有关键的结构 角色

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摘要

All seryl-tRNA synthetases (SerRSs) are functional homodimers with a C-terminal active site domain typical for class II aminoacyl-tRNA synthetases and an N-terminal domain involved in tRNA binding. The recently solved three-dimensional structure of Methanosarcina barkeri SerRS revealed the idiosyncratic features of methanogenic-type SerRSs; that is, an active site zinc ion, a unique tRNA binding domain, and an insertion of ∼30 residues in the catalytic domain, which adopt a helix-turn-helix (HTH) fold. Here, we present biochemical evidence for multiple roles of the HTH motif; it is important for dimerization of the enzyme, contributes to the overall stability, and is critical for the proper positioning of the tRNA binding domain relative to the catalytic domain. The changes in intrinsic fluorescence during denaturation of the wild-type M. barkeri SerRS and of the mutated variant lacking the HTH motif combined with cross-linking and gel analysis of protein subunits during various stages of the unfolding process revealed significantly reduced stability of the mutant dimers. In vitro kinetic analysis of enzymes, mutated in one of the N-terminal helices and the HTH motif, shows impaired tRNA binding and aminoacylation and emphasizes the importance of this domain for the overall architecture of the enzyme. The role of the idiosyncratic HTH motif in dimer stabilization and association between the catalytic and tRNA binding domain has been additionally confirmed by a yeast two-hybrid approach. Furthermore, we provide experimental evidence that tRNA binds across the dimer.
机译:所有的丝氨酰tRNA合成酶(SerRSs)是功能性同型二聚体,具有II类氨酰基tRNA合成酶典型的C端活性位点域和一个与tRNA结合的N端域。最近解决的巴氏甲烷八叠球菌SerRS的三维结构揭示了产甲烷型SerRS的特异特征。也就是说,一个活性位点锌离子,一个独特的tRNA结合结构域以及在催化结构域中插入了约30个残基,这些残基采用螺旋-转-螺旋(HTH)折叠。在这里,我们介绍了HTH基序的多种作用的生化证据。它对于酶的二聚化很重要,有助于整体稳定性,对于tRNA结合域相对于催化域的正确定位至关重要。野生型巴氏支原体SerRS和缺少HTH基序的突变变异体在变性过程中固有荧光的变化,在展开过程的各个阶段结合蛋白质亚基的交联和凝胶分析表明,突变体的稳定性显着降低二聚体。在N端螺旋和HTH基序之一中突变的酶的体外动力学分析显示,tRNA结合和氨基酰化受损,并且 强调了该领域对于整体架构的重要性 酶。特异的HTH基序在二聚体稳定和 催化和tRNA结合域之间的关联已经 另外通过酵母双杂交方法证实。此外,我们提供 tRNA结合整个二聚体的实验证据。

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