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Unraveling the stereochemical and dynamic aspects of the catalytic site of bacterial peptidyl-tRNA hydrolase

机译:揭示细菌肽基-tRNA水解酶催化位点的立体化学和动力学方面

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摘要

Bacterial peptidyl-tRNA hydrolase (Pth; EC 3.1.1.29) hydrolyzes the peptidyl-tRNAs accumulated in the cytoplasm and thereby prevents cell death by alleviating tRNA starvation. X-ray and NMR studies of Vibrio cholerae Pth (VcPth) and mutants of its key residues involved in catalysis show that the activity and selectivity of the protein depends on the stereochemistry and dynamics of residues H24, D97, N118, and N14. D97-H24 interaction is critical for activity because it increases the nucleophilicity of H24. The N118 and N14 have orthogonally competing interactions with H24, both of which reduce the nucleophilicity of H24 and are likely to be offset by positioning of a peptidyl-tRNA substrate. The region proximal to H24 and the lid region exhibit slow motions that may assist in accommodating the substrate. Helix α3 exhibits a slow wobble with intermediate time scale motions of its N-cap residue N118, which may work as a flypaper to position the scissile ester bond of the substrate. Overall, the dynamics of interactions between the side chains of N14, H24, D97, and N118, control the catalysis of substrate by this enzyme.
机译:细菌肽基-tRNA水解酶(Pth; EC 3.1.1.29)水解细胞质中积累的肽基-tRNA,从而通过减轻tRNA饥饿来防止细胞死亡。霍乱弧菌Pth(VcPth)及其关键残基突变体的X射线和NMR研究表明,该蛋白的活性和选择性取决于残基H24,D97,N118和N14的立体化学和动力学。 D97-H24相互作用对于活性至关重要,因为它增加了H24的亲核性。 N118和N14与H24具有正交竞争的相互作用,两者都降低了H24的亲核性,并且很可能被肽基tRNA底物的定位所抵消。 H24附近的区域和盖子区域显示慢动作,可能有助于容纳基材。螺旋α3在其N帽残基N118的中间时间尺度运动中表现出缓慢的摆动,它可以作为飞纸来定位基材的易裂酯键。总体而言,N14,H24,D97和N118侧链之间相互作用的动力学控制了这种酶对底物的催化作用。

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