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在氨基末端α-螺旋缺失后暴露的EF手型蛋白肌钙蛋白C中央螺旋中甘氨酸(第89位残基)的作用。

The role of glycine (residue 89) in the central helix of EF-hand protein troponin-C exposed following amino-terminal alpha-helix deletion.

作者信息

Ding X L, Akella A B, Su H, Gulati J

机构信息

Department of Medicine, Albert Einstein College of Medicine, Bronx, New York 10461.

出版信息

Protein Sci. 1994 Nov;3(11):2089-96. doi: 10.1002/pro.5560031122.

Abstract

Because an N-terminal alpha-helical (N-helix) arm and a KGK-triplet (residues 88KGK90) in the central helix of troponin-C (TnC) are missing in calmodulin, several recent studies have attempted to elucidate the structure-function correlations of these units. Presently, with a family of genetically manipulated derivatives especially developed for this study and tested on permeabilized isolated single skeletal muscle fiber segments, we explored the specificities of the amino acid residues within the N-helix and the KGK-triplet in TnC. Noticeably, the amino acid compositions vary between the N-helices of the cardiac and skeletal TnC isoforms. On the other hand, the KGK-triplet is located similarly in both TnC isoforms. We previously indicated that deletion of the N-helix (mutant delta Nt) diminishes the tension obtained on activation with maximal calcium, but the contractile function is revived by the superimposed deletion of the 88KGK90-triplet (mutant delta Nt delta KGK; see Gulati J, Babu A, Su H, Zhang YF, 1993, J Biol Chem 268:11685-11690). Using this functional test, we find that replacement of Gly-89 with a Leu or an Ala could also overcome the contractile defect associated with N-helix deletion. On the other hand, replacement of the skeletal TnC N-helix with cardiac type N-helix was unable to restore contractile function. The findings indicate a destabilizing influence of Gly-89 residue in skeletal TnC and suggest that the N-terminal arm in normal TnC serves to moderate this effect. Moreover, specificity of the N-helix between cardiac and skeletal TnCs raises the possibility that resultant structural disparities are also important for the functional distinctions of the TnC isoforms.

摘要

由于钙调蛋白中肌钙蛋白C(TnC)中央螺旋的N端α螺旋(N螺旋)臂和KGK三联体(第88 - 90位氨基酸残基KGK)缺失,最近的几项研究试图阐明这些单元的结构 - 功能关系。目前,我们利用专门为此研究开发并在通透的分离单根骨骼肌纤维段上进行测试的一系列基因操作衍生物,探究了TnC中N螺旋和KGK三联体内氨基酸残基的特异性。值得注意的是,心脏型和骨骼肌型TnC同工型的N螺旋之间氨基酸组成有所不同。另一方面,KGK三联体在两种TnC同工型中的位置相似。我们之前指出,N螺旋缺失(突变体delta Nt)会降低最大钙激活时产生的张力,但88KGK90三联体的叠加缺失(突变体delta Nt delta KGK;见Gulati J、Babu A、Su H、Zhang YF,1993,《生物化学杂志》268:11685 - 11690)可恢复收缩功能。通过这种功能测试,我们发现用亮氨酸或丙氨酸取代第89位甘氨酸也能克服与N螺旋缺失相关的收缩缺陷。另一方面,用心脏型N螺旋取代骨骼肌型TnC的N螺旋无法恢复收缩功能。这些发现表明骨骼肌型TnC中第89位甘氨酸残基具有去稳定作用,并表明正常TnC中的N端臂起到了调节这种作用的功能。此外,心脏型和骨骼肌型TnC之间N螺旋的特异性增加了这样一种可能性,即由此产生的结构差异对于TnC同工型的功能差异也很重要。

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