Specific protein-urea interactions

Zhi Wei Wong, Daiwen Yang
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Abstract

The mechanism of urea's action in protein denaturation remains largely unknown. To provide an experimental basis for molecular dynamics (MD) simulations on urea-protein interactions, we investigated the effect of urea on human intestinal fatty acid binding protein (hIFABP) by nuclear magnetic resonance (NMR). Hydrogen-deuterium exchange (HDX) rates at ≤ 2 M urea indicate that urea affects hIFABP in a residue-specific manner via direct urea-protein interactions and preferentially weakens hydrogen bonds between highly protected amides. Residue-specific effects of urea on NMR peak intensities and chemical shifts further support the presence of direct urea-protein interactions. Two-dimensional (2D) water-rotating frame Overhauser enhancement (ROE) data shows one protein-bound water molecule in contact with Val66 and Trp82, one putative bound water molecule in interaction with Thr76 and E-F loop, and that urea at low concentrations cannot displace these protein-bound water molecules. Our urea-nuclear Overhauser effect (NOE) experiments using 15N-urea further show no tightly protein-bound urea molecules. Our results thus suggest specific, but weak or transient, urea-protein interactions, supporting the direct interaction model of urea denaturation.

Abstract Image

特异性蛋白质-尿素相互作用
尿素在蛋白质变性中的作用机制在很大程度上仍不清楚。为了为尿素-蛋白相互作用的分子动力学模拟提供实验依据,我们采用核磁共振(NMR)技术研究了尿素对人肠道脂肪酸结合蛋白(hIFABP)的影响。≤2 M尿素的氢-氘交换(HDX)率表明,尿素通过直接的尿素-蛋白相互作用以残基特异性的方式影响hIFABP,并优先削弱高度保护的酰胺之间的氢键。尿素对核磁共振峰强度和化学位移的残留物特异性影响进一步支持了尿素-蛋白质直接相互作用的存在。二维(2D)水旋转框架Overhauser增强(ROE)数据显示,一个蛋白质结合水分子与Val66和Trp82接触,一个假定的结合水分子与Thr76和E-F环相互作用,并且低浓度的尿素不能取代这些蛋白质结合水分子。我们使用15n -尿素进行的尿素-核Overhauser效应(NOE)实验进一步表明,尿素分子没有紧密结合的蛋白。因此,我们的研究结果表明,尿素-蛋白之间存在特异性的、微弱的或短暂的相互作用,支持尿素变性的直接相互作用模型。
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来源期刊
Magnetic Resonance Letters
Magnetic Resonance Letters Analytical Chemistry, Spectroscopy, Radiology and Imaging, Biochemistry, Genetics and Molecular Biology (General)
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