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溶剂诱导钙调蛋白中蛋白质主链氢键的分化。

Solvent-induced differentiation of protein backbone hydrogen bonds in calmodulin.

作者信息

Juranić Nenad, Atanasova Elena, Streiff John H, Macura Slobodan, Prendergast Franklyn G

机构信息

Department of Biochemistry and Molecular Biology, Mayo College of Medicine, Mayo Clinic and Foundation, Rochester, MN 55905, USA.

出版信息

Protein Sci. 2007 Jul;16(7):1329-37. doi: 10.1110/ps.062689807. Epub 2007 Jun 13.

Abstract

In apo and holoCaM, almost half of the hydrogen bonds (H-bonds) at the protein backbone expected from the corresponding NMR or X-ray structures were not detected by h3JNC' couplings. The paucity of the h3JNC' couplings was considered in terms of dynamic features of these structures. We examined a set of seven proteins and found that protein-backbone H-bonds form two groups according to the h3JNC' couplings measured in solution. H-bonds that have h3JNC' couplings above the threshold of 0.2 Hz show distance/angle correlation among the H-bond geometrical parameters, and appear to be supported by the backbone dynamics in solution. The other H-bonds have no such correlation; they populate the water-exposed and flexible regions of proteins, including many of the CaM helices. The observed differentiation in a dynamical behavior of backbone H-bonds in apo and holoCaM appears to be related to protein functions.

摘要

在脱辅基钙调蛋白(apoCaM)和全钙调蛋白(holoCaM)中,相应的核磁共振(NMR)或X射线结构所预期的蛋白质主链上近一半的氢键(H键)未通过h3JNC'偶合检测到。根据这些结构的动态特征来考虑h3JNC'偶合的缺乏情况。我们研究了一组七种蛋白质,发现根据溶液中测量的h3JNC'偶合,蛋白质主链氢键形成两组。h3JNC'偶合高于0.2 Hz阈值的氢键在氢键几何参数之间显示出距离/角度相关性,并且似乎得到溶液中主链动力学的支持。其他氢键没有这种相关性;它们分布在蛋白质的水暴露和柔性区域,包括许多钙调蛋白螺旋。在脱辅基钙调蛋白和全钙调蛋白中观察到的主链氢键动力学行为的差异似乎与蛋白质功能有关。

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