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人胰岛素的完整序列特异性¹H NMR归属

Complete sequence-specific 1H NMR assignments for human insulin.

作者信息

Kline A D, Justice R M

机构信息

Lilly Research Laboratories, Eli Lilly and Company, Indianapolis, Indiana 46285-1513.

出版信息

Biochemistry. 1990 Mar 27;29(12):2906-13. doi: 10.1021/bi00464a003.

Abstract

Solvent conditions where human insulin could be studied by high-resolution NMR were determined. Both low pH and addition of acetonitrile were required to overcome the protein's self-association and to obtain useful spectra. Two hundred eighty-six 1H resonances were located and assigned to specific sites on the protein by using two-dimensional NMR methods. The presence and position of numerous dNN sequential NOE's indicate that the insulin conformation seen in crystallographic studies is largely retained under these solution conditions. Slowly exchanging protons were observed for seven backbone amide protons and were assigned to positions A15 and A16 and to positions B15-B19. These amides all occur within helical regions of the protein [Chawdhury, S.A., Dodson, E.J., Dodson, G.G., Reynolds, C.D., Tolley, S.P., Blundell, T.L., Cleasby, A., Pitts, J.E., Tickle, I.J., & Wood, S.P. (1983) Diabetologia 25, 460-464].

摘要

确定了可通过高分辨率核磁共振研究人胰岛素的溶剂条件。需要低pH值和添加乙腈来克服蛋白质的自缔合并获得有用的光谱。通过使用二维核磁共振方法,定位了286个1H共振峰并将其指定到蛋白质上的特定位点。大量dNN序列核Overhauser效应(NOE)的存在和位置表明,在晶体学研究中看到的胰岛素构象在这些溶液条件下基本得以保留。观察到七个主链酰胺质子的质子交换缓慢,并将其指定到A15和A16位置以及B15 - B19位置。这些酰胺都出现在蛋白质的螺旋区域内[Chawdhury, S.A., Dodson, E.J., Dodson, G.G., Reynolds, C.D., Tolley, S.P., Blundell, T.L., Cleasby, A., Pitts, J.E., Tickle, I.J., & Wood, S.P. (1983) Diabetologia 25, 460 - 464]。

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