首页> 外文OA文献 >The N-terminal Region of Twitchin Binds Thick and Thin Contractile Filaments: REDUNDANT MECHANISMS OF CATCH FORCE MAINTENANCE*
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The N-terminal Region of Twitchin Binds Thick and Thin Contractile Filaments: REDUNDANT MECHANISMS OF CATCH FORCE MAINTENANCE*

机译:Twitchin的N末端区域束缚了细细的收缩细丝:保持力的冗余机制*

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摘要

Catch force maintenance in invertebrate smooth muscles is probably mediated by a force-bearing tether other than myosin cross-bridges between thick and thin filaments. The phosphorylation state of the mini-titin twitchin controls catch. The C-terminal phosphorylation site (D2) of twitchin with its flanking Ig domains forms a phosphorylation-sensitive complex with actin and myosin, suggesting that twitchin is the tether (Funabara, D., Osawa, R., Ueda, M., Kanoh, S., Hartshorne, D. J., and Watabe, S. (2009) J. Biol. Chem. 284, 18015–18020). Here we show that a region near the N terminus of twitchin also interacts with thick and thin filaments from Mytilus anterior byssus retractor muscles. Both a recombinant protein, including the D1 and DX phosphorylation sites with flanking 7th and 8th Ig domains, and a protein containing just the linker region bind to thin filaments with about a 1:1 mol ratio to actin and Kd values of 1 and 15 μm, respectively. Both proteins show a decrease in binding when phosphorylated. The unphosphorylated proteins increase force in partially activated permeabilized muscles, suggesting that they are sufficient to tether thick and thin filaments. There are two sites of thin filament interaction in this region because both a 52-residue peptide surrounding the DX site and a 47-residue peptide surrounding the D1 site show phosphorylation-dependent binding to thin filaments. The peptides relax catch force, confirming the region's central role in the mechanism of catch. The multiple sites of thin filament interaction in the N terminus of twitchin in addition to those in the C terminus provide an especially secure and redundant mechanical link between thick and thin filaments in catch.
机译:在无脊椎平滑肌中捕获力的维持可能是由粗细丝之间的肌球蛋白跨桥以外的承力系链介导的。迷你视黄素的线粒体的磷酸化状态控制了捕获量。 Twitchin的C端磷酸化位点(D2)及其侧翼的Ig结构域与肌动蛋白和肌球蛋白形成了一个磷酸化敏感的复合物,表明twitchin是系链(Funabara,D.,Osawa,R.,Ueda,M.,Kanoh ,S.,Hartshorne,DJ和Watabe,S。(2009)J. Biol。Chem。284,18015–18020)。在这里,我们显示了靠近维希奇N末端的区域还与来自Mytilus前屈肌牵开器肌肉的细细丝相互作用。重组蛋白(包括带有第7和第8 Ig域侧翼的D1和DX磷酸化位点)以及仅包含连接子区域的蛋白都与细丝结合,细丝与肌动蛋白和Kd值为1和15μm的摩尔比约为1:1 , 分别。两种蛋白质在磷酸化时均显示结合力降低。未磷酸化的蛋白质增加了部分激活的透化肌肉的力量,表明它们足以束缚粗细的细丝。在该区域中有两个细丝相互作用的位点,因为DX位点周围的52个残基肽和D1位点周围的47个残基肽均显示出与细丝的磷酸化依赖性结合。肽松弛了捕获力,证实了该区域在捕获机制中的核心作用。除了在T末端的T末端的N末端,细丝相互作用的多个位点还提供了捕获物中粗细丝之间的特别安全和冗余的机械连接。

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