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原肌球蛋白重叠末端与心肌肌钙蛋白 T N 端之间的相互作用影响肌动蛋白上的原肌球蛋白状态。

Interplay between the overlapping ends of tropomyosin and the N terminus of cardiac troponin T affects tropomyosin states on actin.

机构信息

Department of Integrative Physiology and Neuroscience, College of Veterinary Medicine, Washington State University, Pullman, WA 99164-6520, USA.

出版信息

FASEB J. 2013 Sep;27(9):3848-59. doi: 10.1096/fj.13-232363. Epub 2013 Jun 7.

Abstract

The functional significance of the molecular swivel at the head-to-tail overlapping ends of contiguous tropomyosin (Tm) dimers in striated muscle is unknown. Contractile measurements were made in muscle fibers from transgenic (TG) mouse hearts that expressed a mutant α-Tm (Tm(H276N)). We also reconstituted mouse cardiac troponin T (McTnT) N-terminal deletion mutants, McTnT(1-44Δ) and McTnT(45-74Δ), into muscle fibers from Tm(H276N). For controls, we used the wild-type (WT) McTnT because altered effects could be correlated with the mutant forms of McTnT. Tm(H276N) slowed crossbridge (XB) detachment rate (g) by 19%. McTnT(1-44Δ) attenuated Ca(2+)-activated maximal tension against Tm(WT) (36%) and Tm(H276N) (38%), but sped g only against Tm(H276N) by 35%. The rate of tension redevelopment decreased (17%) only in McTnT(1-44Δ) + Tm(H276N) fibers. McTnT(45-74Δ) attenuated tension (19%) and myofilament Ca(2+) sensitivity (pCa50=5.93 vs. 6.00 in the control fibers) against Tm(H276N), but not against Tm(WT) background. Thus, altered XB cycling kinetics decreased the fraction of strongly bound XBs in McTnT(1-44Δ) + Tm(H276N) fibers, whereas diminished thin-filament cooperativity attenuated tension in McTnT(45-74Δ) + Tm(H276N) fibers. In summary, our study is the first to show that the interplay between the N terminus of cTnT and the overlapping ends of contiguous Tm effectuates different states of Tm on the actin filament.

摘要

肌球蛋白头部-尾部重叠末端的分子旋转在横纹肌连续原肌球蛋白(Tm)二聚体中的功能意义尚不清楚。我们在表达突变α-Tm(Tm(H276N))的转基因(TG)鼠心脏的纤维中进行了收缩测量。我们还将鼠心肌肌钙蛋白 T(McTnT)N 端缺失突变体 McTnT(1-44Δ)和 McTnT(45-74Δ)重新构成肌纤维 Tm(H276N)。作为对照,我们使用了野生型(WT)McTnT,因为可以将改变的作用与 McTnT 的突变形式相关联。Tm(H276N)使横桥(XB)脱离速率(g)降低 19%。McTnT(1-44Δ)减弱了 Ca2+激活的对 Tm(WT)(36%)和 Tm(H276N)(38%)的最大张力,但仅对 Tm(H276N)的 g 提高了 35%。仅在 McTnT(1-44Δ)+Tm(H276N)纤维中张力重新发展的速率降低了 17%。McTnT(45-74Δ)减弱了张力(19%)和肌丝 Ca2+敏感性(pCa50=5.93 对控制纤维中的 6.00)对 Tm(H276N)的作用,但对 Tm(WT)背景没有作用。因此,改变的 XB 循环动力学降低了 McTnT(1-44Δ)+Tm(H276N)纤维中强结合 XB 的分数,而薄丝协同作用的减弱则降低了 McTnT(45-74Δ)+Tm(H276N)纤维中的张力。总之,我们的研究首次表明,cTnT 的 N 端和连续 Tm 的重叠末端之间的相互作用可产生肌动蛋白丝上不同的 Tm 状态。

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