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通过核磁共振光谱法测定肌钙蛋白I的第二个结合区域与骨骼肌肌钙蛋白C调节结构域之间的相互作用。

Interaction of the second binding region of troponin I with the regulatory domain of skeletal muscle troponin C as determined by NMR spectroscopy.

作者信息

McKay R T, Tripet B P, Hodges R S, Sykes B D

机构信息

Department of Biochemistry, University of Alberta, Edmonton, Alberta T6G 2H7, Canada.

出版信息

J Biol Chem. 1997 Nov 7;272(45):28494-500. doi: 10.1074/jbc.272.45.28494.

Abstract

Two dimensional 1H,15N-heteronuclear single quantum correlation NMR was used to monitor the resonance frequency changes of the backbone amide groups belonging to the 15N-labeled regulatory domain of calcium saturated troponin C (N-TnC) upon addition of synthetic skeletal N-acetyl-troponin I 115-131-amide peptide (TnI115-131). Utilizing the change in amide chemical shifts, the dissociation constant for 1:1 binding of TnI115-131 to N-TnC in low salt and 100 mM KCl samples was determined to be 28 +/- 4 and 24 +/- 4 microM, respectively. The off rate of TnI115-131 was determined to be 300 s-1 from observed N-TnC backbone amide 1H,15N-heteronuclear single quantum correlation cross-peak line widths, which is on the order of the calcium off rates (Li, M. X., Gagné, S. M., Tsuda, S., Kay, C. M., Smillie, L. B., and Sykes, B. D. (1995) Biochemistry 34, 8330-8340), and agrees with kinetic expectations for biological regulation of muscle contraction. The TnI115-131 binding site on N-TnC was determined by mapping of chemical shift changes onto the N-TnC NMR structure and was demonstrated to be in the "hydrophobic pocket" (Gagné, S. M., Tsuda, S., Li, M. X., Smillie, L. B., and Sykes, B. D. (1995) Nat. Struct. Biol. 2, 784-789).

摘要

二维¹H,¹⁵N-异核单量子相关核磁共振用于监测添加合成的骨骼肌N-乙酰肌钙蛋白I 115 - 131酰胺肽(TnI115 - 131)后,属于钙饱和肌钙蛋白C(N - TnC)的¹⁵N标记调节结构域的主链酰胺基团的共振频率变化。利用酰胺化学位移的变化,测定了低盐和100 mM KCl样品中TnI115 - 131与N - TnC 1:1结合的解离常数,分别为28±4和24±4 μM。根据观察到的N - TnC主链酰胺¹H,¹⁵N-异核单量子相关交叉峰线宽,确定TnI115 - 131的解离速率为300 s⁻¹,这与钙解离速率处于同一量级(Li, M. X., Gagné, S. M., Tsuda, S., Kay, C. M., Smillie, L. B., and Sykes, B. D. (1995) Biochemistry 34, 8330 - 8340),并且符合肌肉收缩生物学调节的动力学预期。通过将化学位移变化映射到N - TnC的NMR结构上,确定了N - TnC上的TnI115 - 131结合位点,结果表明其位于“疏水口袋”中(Gagné, S. M., Tsuda, S., Li, M. X., Smillie, L. B., and Sykes, B. D. (1995) Nat. Struct. Biol. 2, 784 - 789)。

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