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首页> 外文期刊>Chemphyschem: A European journal of chemical physics and physical chemistry >Novel covalent bond in proteins: Calculations on model systems question the bond stability
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Novel covalent bond in proteins: Calculations on model systems question the bond stability

机译:蛋白质中的新型共价键:对模型系统的计算质疑键的稳定性

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摘要

We have investigated the sulfilimine covalent link between methionine (Met) and lysine (Lys), recently identified in collagen IV (R. Vanacore, A.-J. L. Ham, M. Voehler, C. R. Sanders, T. P. Conrads, T. D. Veenstra, K. B. Sharpless, P. E. Dawson, B. G. Hudson, Science 2009, 325, 1230), and have explored its stability with respect to both the redox processes and UV radiation by means of advanced computational methods. We have concluded that the bond should be present in a protonated state, (-NH=S-)~+. The bond is characterized by a relatively high standard reduction potential, that is, the bond should not be stable in a typical cell environment; if the sulfilimine bond exists (as suggested by the experiment) then the bond has to be supported by the protein environment. The sulfilimine bond then destabilizes the protein structure with respect to the alternative tertiary structure. We discuss conditions under which the bond could be formed as well as other possible structural arrangements consistent with the Met-Lys stoichiometry; some of the alternative bond motifs are more thermodynamically stable than the sulfilimine bond. We suggest that the character of the Met-Lys contact could be approached via NEXAFS spectroscopy. Finally, we show that the protonation brings photostability to the sulfilimine bond.
机译:我们研究了最近在胶原蛋白IV中鉴定的蛋氨酸(Met)和赖氨酸(Lys)之间的亚硫亚胺共价链接(R. Vanacore,A.-JL Ham,M。Voehler,CR Sanders,TP Conrads,TD Veenstra,KB Sharpless, PE Dawson,BG Hudson,Science 2009,325,1230),并已通过先进的计算方法探索了其在氧化还原过程和UV辐射方面的稳定性。我们已经得出结论,该键应以质子化状态(-NH = S-)〜+存在。该键的特征在于相对较高的标准还原电势,即该键在典型的电池环境中不应该稳定。如果存在亚硫亚胺键(如实验所示),则该键必须由蛋白质环境支持。然后,亚硫胺键相对于替代的三级结构使蛋白质结构不稳定。我们讨论了形成键的条件以及与Met-Lys化学计量相符的其他可能的结构安排;一些替代键基序比亚硫亚胺键在热力学上更稳定。我们建议可以通过NEXAFS光谱学来接近Met-Lys接触的特征。最后,我们表明质子化为硫亚胺键带来了光稳定性。

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