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Detection of cis and trans X-Pro peptide bonds in proteins by 13C NMR: application to collagen.

机译:通过13 C NMR检测蛋白质中的顺式和反式X-Pro肽键:应用于胶原蛋白。

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摘要

Heretofore the complexity of natural abundance spectra has precluded the use of 13C NMR to detect cis peptide bonds in proteins. We have incorporated [4-13C]proline into chicken calvaria collagen and report here well-resolved C gamma signals, arising from cis and trans X-Pro and X-Hyp peptide bonds (where X is any amino acid residue) in the 13C NMR spectrum of the thermally unfolded protein. Measurement of 13C signal areas shows that 16% of the X-Pro and 8% of X-Hyp bonds are cis in the unfolded collagen. These results strongly support the conclusion drawn from kinetic studies that cis-trans isomerization of peptide bonds is the rate-limiting step in helix propagation after nucleation. Our method can be applied to other proteins as well and should aid in testing the generality of the hypothesis of Brandts, Halvorson, and Brennan that cis-trans isomerization is the rate-limiting step in protein folding when proline is present.
机译:迄今为止,天然丰度光谱的复杂性使得无法使用13 C NMR检测蛋白质中的顺式肽键。我们将[4-13C]脯氨酸掺入了鸡颅骨胶原蛋白中,并在此处报告了13C NMR中由顺式和反式X-Pro和X-Hyp肽键(其中X为任何氨基酸残基)引起的Cγ信号热展开蛋白的光谱。 13C信号区域的测量表明,在未折叠的胶原蛋白中,X-Pro的16%和X-Hyp键的8%为顺式。这些结果强烈支持从动力学研究得出的结论,即肽键的顺反异构化是成核后螺旋传播的限速步骤。我们的方法也可以应用于其他蛋白质,并且应该有助于检验Brandts,Halvorson和Brennan的假说的普遍性,即当存在脯氨酸时,顺反异构化是蛋白质折叠中的限速步骤。

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