首页> 外文OA文献 >Nebulin Alters Cross-bridge Cycling Kinetics and Increases Thin Filament Activation: A NOVEL MECHANISM FOR INCREASING TENSION AND REDUCING TENSION COST*
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Nebulin Alters Cross-bridge Cycling Kinetics and Increases Thin Filament Activation: A NOVEL MECHANISM FOR INCREASING TENSION AND REDUCING TENSION COST*

机译:星云蛋白改变跨桥循环动力学并增加细丝激活:增加张力和降低张力成本的新型机制*

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摘要

Nebulin is a giant filamentous F-actin-binding protein (∼800 kDa) that binds along the thin filament of the skeletal muscle sarcomere. Nebulin is one of the least well understood major muscle proteins. Although nebulin is usually viewed as a structural protein, here we investigated whether nebulin plays a role in muscle contraction by using skinned muscle fiber bundles from a nebulin knock-out (NEB KO) mouse model. We measured force-pCa (−log[Ca2+]) and force-ATPase relations, as well as the rate of tension re-development (ktr) in tibialis cranialis muscle fibers. To rule out any alterations in troponin (Tn) isoform expression and/or status of Tn phosphorylation, we studied fiber bundles that had been reconstituted with bacterially expressed fast skeletal muscle recombinant Tn. We also performed a detailed analysis of myosin heavy chain, myosin light chain, and myosin light chain 2 phosphorylation, which showed no significant differences between wild type and NEB KO. Our mechanical studies revealed that NEB KO fibers had increased tension cost (5.9 versus 4.4 pmol millinewtons−1 mm−1 s−1) and reductions in ktr (4.7 versus 7.3 s−1), calcium sensitivity (pCa50 5.74 versus 5.90), and cooperativity of activation (nH 3.64 versus 4.38). Our findings indicate the following: 1) in skeletal muscle nebulin increases thin filament activation, and 2) through altering cross-bridge cycling kinetics, nebulin increases force and efficiency of contraction. These novel properties of nebulin add a new level of understanding of skeletal muscle function and provide a mechanism for the severe muscle weakness in patients with nebulin-based nemaline myopathy.
机译:Nebulin是一种巨大的丝状F-肌动蛋白结合蛋白(约800 kDa),沿着骨骼肌肌节的细丝结合。神经蛋白是最鲜为人知的主要肌肉蛋白之一。尽管通常将星云蛋白视为一种结构蛋白,但在这里我们通过使用来自星云蛋白敲除(NEB KO)小鼠模型的皮肤肌纤维束来研究星云蛋白是否在肌肉收缩中起作用。我们测量了胫骨胫骨肌纤维中的力-pCa(-log [Ca2 +])和力-ATPase关系,以及张力重建的速率(ktr)。为了排除肌钙蛋白(Tn)同工型表达和/或Tn磷酸化状态的任何改变,我们研究了已被细菌表达的快速骨骼肌重组Tn重建的纤维束。我们还进行了肌球蛋白重链,肌球蛋白轻链和肌球蛋白轻链2磷酸化的详细分析,表明野生型和NEB KO之间没有显着差异。我们的机械研究表明,NEB KO纤维具有较高的拉伸成本(5.9对4.4 pmol毫牛顿-1 mm-1 s-1)和ktr降低(4.7对7.3 s-1),钙敏感性(pCa50 5.74对5.90)和激活的协同性(nH 3.64对4.38)。我们的发现表明以下几点:1)骨骼肌中的神经蛋白增加细丝激活,2)通过改变跨桥循环动力学,神经蛋白增加收缩力和收缩效率。星云蛋白的这些新特性增加了对骨骼肌功能的认识,并为基于星云蛋白的肾上腺肌病患者的严重肌肉无力提供了一种机制。

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