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Molecular structure of the sarcomeric Z-disk: two types of titin interactions lead to an asymmetrical sorting of alpha-actinin.

机译:肌节Z盘的分子结构:两种类型的titin相互作用导致α-actinin的不对称排序。

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摘要

The sarcomeric Z-disk, the anchoring plane of thin (actin) filaments, links titin (also called connectin) and actin filaments from opposing sarcomere halves in a lattice connected by alpha-actinin. We demonstrate by protein interaction analysis that two types of titin interactions are involved in the assembly of alpha-actinin into the Z-disk. Titin interacts via a single binding site with the two central spectrin-like repeats of the outermost pair of alpha-actinin molecules. In the central Z-disk, titin can interact with multiple alpha-actinin molecules via their C-terminal domains. These interactions allow the assembly of a ternary complex of titin, actin and alpha-actinin in vitro, and are expected to constrain the path of titin in the Z-disk. In thick skeletal muscle Z-disks, titin filaments cross over the Z-disk centre by approximately 30 nm, suggesting that their alpha-actinin-binding sites overlap in an antiparallel fashion. The combination of our biochemical and ultrastructural data now allows a molecular model of the sarcomeric Z-disk, where overlapping titin filaments and their interactions with the alpha-actinin rod and C-terminal domain can account for the essential ultrastructural features.
机译:肌节Z盘是细(肌动蛋白)细丝的锚固平面,将α-肌动蛋白连接的晶格中相对的肌节半部分的肌动蛋白(也称为connectin)和肌动蛋白丝连接起来。通过蛋白质相互作用分析,我们证明了两种类型的titin相互作用都参与了组装到Z盘的alpha-actinin。 Titin通过单个结合位点与最外层的α-肌动蛋白分子的两个中央血影蛋白样重复序列相互作用。在中央Z盘中,titin可以通过其C末端结构域与多个alpha-actinin分子相互作用。这些相互作用允许在体外组装titin,actin和alpha-actinin的三元复合物,并有望限制titin在Z盘中的路径。在骨骼肌厚的Z盘中,肌动蛋白丝跨越Z盘中心约30 nm,这表明它们的α-肌动蛋白结合位点以反平行的方式重叠。我们将生化和超微结构数据相结合,现在可以建立肌节Z盘的分子模型,其中重叠的纤丝和它们与α-肌动蛋白棒和C末端结构域的相互作用可以解释基本的超微结构特征。

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