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心肌肌钙蛋白-I147-163的结合会诱导人心肌肌钙蛋白-C出现结构开放。

Binding of cardiac troponin-I147-163 induces a structural opening in human cardiac troponin-C.

作者信息

Li M X, Spyracopoulos L, Sykes B D

机构信息

MRC Group in Protein Structure and Function, Department of Biochemistry, University of Alberta, Edmonton, Canada.

出版信息

Biochemistry. 1999 Jun 29;38(26):8289-98. doi: 10.1021/bi9901679.

Abstract

The interaction of troponin-C (TnC) with troponin-I (TnI) plays a central role in skeletal and cardiac muscle contraction. We have recently shown that the binding of Ca2+ to cardiac TnC (cTnC) does not induce an "opening" of the regulatory domain in order to interact with cTnI [Sia, S. K., et al. (1997) J. Biol. Chem. 272, 18216-18221; Spyracopoulos et al. (1997) Biochemistry 36, 12138-12146], which is in contrast to the regulatory N-domain of skeletal TnC (sTnC). This implies that the mode of interaction between cTnC and cTnI may be different than that between sTnC and sTnI. In sTnI, a region downstream from the inhibitory region (residues 115-131) has been shown to bind the exposed hydrophobic pocket of Ca2+-saturated sNTnC [McKay, R. T., et al. (1997) J. Biol. Chem. 272, 28494-28500]. The present study demonstrates that the corresponding region in cTnI (residues 147-163) binds to the regulatory domain of cTnC only in the Ca2+-saturated state to form a 1:1 complex, with an affinity approximately six times weaker than that between the skeletal counterparts. Thus, while Ca2+ does not cause opening, it is required for muscle regulation. The solution structure of the cNTnC.Ca2+.cTnI147-163 complex has been determined by multinuclear multidimensional NMR spectroscopy. The structure reveals an open conformation for cNTnC, similar to that of Ca2+-saturated sNTnC. The bound peptide adopts a alpha-helical conformation spanning residues 150-157. The C-terminus of the peptide is unstructured. The open conformation for Ca2+-saturated cNTnC in the presence of cTnI (residues 147-163) accommodates hydrophobic interactions between side chains of the peptide and side chains at the interface of A and B helices of cNTnC. Thus the mechanistic differences between the regulation of cardiac and skeletal muscle contraction can be understood in terms of different thermodynamics and kinetics equilibria between essentially the same structure states.

摘要

肌钙蛋白C(TnC)与肌钙蛋白I(TnI)的相互作用在骨骼肌和心肌收缩中起核心作用。我们最近发现,Ca2+与心肌TnC(cTnC)结合并不会诱导调节结构域“打开”以与cTnI相互作用[Sia, S. K., 等人 (1997) 《生物化学杂志》272, 18216 - 18221;Spyracopoulos等人 (1997) 《生物化学》36, 12138 - 12146],这与骨骼肌TnC(sTnC)的调节性N结构域不同。这意味着cTnC与cTnI之间的相互作用模式可能与sTnC和sTnI之间的不同。在sTnI中,抑制区域下游的一个区域(残基115 - 131)已被证明可与Ca2+饱和的sNTnC暴露的疏水口袋结合[McKay, R. T., 等人 (1997) 《生物化学杂志》272, 28494 - 28500]。本研究表明,cTnI中的相应区域(残基147 - 163)仅在Ca2+饱和状态下与cTnC的调节结构域结合形成1:1复合物,其亲和力比骨骼肌对应物之间的亲和力弱约六倍。因此,虽然Ca2+不会导致结构域打开,但肌肉调节需要它。cNTnC.Ca2+.cTnI147 - 163复合物的溶液结构已通过多核多维核磁共振光谱确定。该结构揭示了cNTnC的开放构象,类似于Ca2+饱和的sNTnC。结合的肽段采用跨越残基150 - 157的α - 螺旋构象。肽段的C末端是无结构的。在存在cTnI(残基147 - 163)的情况下,Ca2+饱和的cNTnC的开放构象容纳了肽段侧链与cNTnC的A和B螺旋界面处侧链之间的疏水相互作用。因此,心肌和骨骼肌收缩调节之间的机制差异可以从基本相同结构状态之间不同的热力学和动力学平衡角度来理解。

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