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首页> 外文期刊>Journal of cell biology >Nebulin regulates the assembly and lengths of the thin filaments in striated muscle
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Nebulin regulates the assembly and lengths of the thin filaments in striated muscle

机译:神经蛋白调节横纹肌中细丝的组装和长度

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摘要

In many tissues, actin monomers polymerize into actin (thin) filaments of precise lengths. Although the exact mechanisms involved remain unresolved, it is proposed that “molecular rulers” dictate the lengths of the actin filaments. The giant nebulin molecule is a prime candidate for specifying thin filament lengths in striated muscle, but this idea has never been proven. To test this hypothesis, we used RNA interference technology in rat cardiac myocytes. Live cell imaging and triple staining revealed a dramatic elongation of the preexisting thin filaments from their pointed ends upon nebulin knockdown, demonstrating its role in length maintenance; the barbed ends were unaffected. When the thin filaments were depolymerized with latrunculin B, myocytes with decreased nebulin levels reassembled them to unrestricted lengths, demonstrating its importance in length specification. Finally, knockdown of nebulin in skeletal myotubes revealed its involvement in myofibrillogenesis. These data are consistent with nebulin functioning as a thin filament ruler and provide insight into mechanisms dictating macromolecular assembly.
机译:在许多组织中,肌动蛋白单体聚合成精确长度的肌动蛋白(细)丝。尽管尚不清楚确切的机制,但有人建议“分子尺”决定肌动蛋白丝的长度。巨大的星云蛋白分子是确定横纹肌中细丝长度的主要候选对象,但这一想法尚未得到证实。为了验证这一假设,我们在大鼠心肌细胞中使用了RNA干扰技术。活细胞成像和三重染色显示,在细链蛋白被击倒后,先前存在的细丝从其尖端显着地伸长,这证明了其在维持长度方面的作用;带刺的末端不受影响。用latrunculin B解聚细丝时,具有降低的星云蛋白水平的心肌细胞将它们重新组装成不受限制的长度,这证明了其在长度规格上的重要性。最后,敲除骨骼肌管中的星云蛋白显示其参与肌原纤维形成。这些数据与作为细丝标尺的神经蛋白功能一致,并提供了指示大分子组装的机理的见解。

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