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首页> 外文期刊>Protein Science: A Publication of the Protein Society >Energetic rationale for an unexpected and abrupt reversal of guanidinium chloride-induced unfolding of peptide deformylase.
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Energetic rationale for an unexpected and abrupt reversal of guanidinium chloride-induced unfolding of peptide deformylase.

机译:意外的和突然的逆转氯化胍诱导的肽去甲酰基酶展开的能量基础。

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摘要

Peptide deformylase (PDF) catalyzes the removal of formyl group from the N-terminal methionine residues of nascent proteins in prokaryotes, and this enzyme is a high priority target for antibiotic design. In pursuit of delineating the structural-functional features of Escherichia coli PDF (EcPDF), we investigated the mechanistic pathway for the guanidinium chloride (GdmCl)-induced unfolding of the enzyme by monitoring the secondary structural changes via CD spectroscopy. The experimental data revealed that EcPDF is a highly stable enzyme, and it undergoes slow denaturation in the presence of varying concentrations of GdmCl. The most interesting aspect of these studies has been the abrupt reversal of the unfolding pathway at low to moderate concentrations of the denaturant, but not at high concentration. An energetic rationale for such an unprecedented feature in protein chemistry is offered.
机译:肽去甲酰基化酶(PDF)催化从原核生物新生蛋白质的N末端甲硫氨酸残基中去除甲酰基,该酶是抗生素设计的高度优先目标。为了描述大肠杆菌PDF(EcPDF)的结构功能特征,我们通过CD光谱监测了二级结构变化,从而研究了胍基氯化物(GdmCl)诱导的酶解的机理。实验数据表明,EcPDF是一种高度稳定的酶,在存在不同浓度的GdmCl的情况下,它会缓慢变性。这些研究中最有趣的方面是在低至中等浓度的变性剂而不是高浓度下,展开途径的突然逆转。为蛋白质化学中的这种前所未有的功能提供了一个充满活力的原理。

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