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Impaired embryonic motility in dusp27 mutants reveals a developmental defect in myofibril structure

机译:dusp27突变体的胚胎运动能力受损揭示了肌原纤维结构的发育缺陷

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An essential step in muscle fiber maturation is the assembly of highly ordered myofibrils that are required for contraction. Much remains unknown about the molecular mechanisms governing the formation of the contractile apparatus. We identified an early embryonic motility mutant in zebrafish caused by integration of a transgene into the pseudophosphatase dual specificity phosphatase 27 ( dusp27 ) gene. dusp27 mutants exhibit near complete paralysis at embryonic and larval stages, producing extremely low levels of spontaneous coiling movements and a greatly diminished touch response. Loss of dusp27 does not prevent somitogenesis but results in severe disorganization of the contractile apparatus in muscle fibers. Sarcomeric structures in mutants are almost entirely absent and only rare triads are observed. These findings are the first to implicate a functional role of dusp27 as a gene required for myofiber maturation and provide an animal model for analyzing the mechanisms governing myofibril assembly.
机译:肌肉纤维成熟的重要步骤是组装收缩所需的高度有序的肌原纤维。关于控制收缩装​​置形成的分子机制,仍然有许多未知的地方。我们在斑马鱼中发现了一个早期的胚胎运动突变体,该突变体是由转基因整合入假磷酸酶双重特异性磷酸酶27(dusp27)基因引起的。 dusp27突变体在胚胎和幼虫阶段表现出近乎完全的瘫痪,产生极低水平的自发卷曲运动并大大降低了触觉响应。 dusp27的丢失不能阻止体细胞的发生,但会导致肌肉纤维中收缩装置的严重混乱。突变体中几乎没有肌节结构,仅观察到罕见的三联体。这些发现是第一个暗示dusp27作为肌纤维成熟所必需的基因的功能,并为分析控制肌原纤维组装的机制提供了动物模型。

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