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Akap12 is essential for the morphogenesis of muscles involved in zebrafish locomotion

机译:Akap12对于参与斑马鱼运动的肌肉的形态发生至关重要

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Swimming behavior in fish is driven by coordinated contractions of muscle fibers. In zebrafish, slow muscle cell migration is crucial for the formation of the muscle network; slow myoblasts, which arise from medial adaxial cells, migrate radially to the lateral surface of the trunk and tail during embryogenesis. This study found that the zebrafish A-kinase anchoring protein (akap)12 isoforms akap12 alpha and akap12 beta are required for muscle morphogenesis and locomotor activity. Embryos deficient in akap12 exhibited reduced spontaneous coiling, touch response, and free swimming. Akap12-depleted slow but not fast muscle cells were misaligned, suggesting that the behavioral abnormalities resulted from specific defects in slow muscle patterning; indeed, slow muscle cells and muscle pioneers in these embryos showed abnormal migration in a cell-autonomous manner. Taken together, these results suggest that akap12 plays a critical role in the development of zebrafish locomotion by regulating the normal morphogenesis of muscles. (C) 2014 International Society of Differentiation. Published by Elsevier B.V. All rights reserved.
机译:鱼的游泳行为是由肌肉纤维的协调收缩驱动的。在斑马鱼中,缓慢的肌肉细胞迁移对于肌肉网络的形成至关重要。缓慢的成肌细胞是由内侧上层细胞产生的,在胚胎发生过程中会径向迁移到躯干和尾巴的外表面。这项研究发现斑马鱼A激酶锚定蛋白(akap)12亚型akap12 alpha和akap12 beta是肌肉形态发生和运动活动所必需的。缺乏akap12的胚胎表现出减少的自发卷曲,触觉反应和自由游泳。消耗了Akap12的慢肌而不是快肌细胞未对齐,这表明行为异常是由慢肌模式中的特定缺陷引起的。实际上,这些胚胎中的慢肌细胞和先驱者以细胞自主方式表现出异常迁移。综上所述,这些结果表明akap12通过调节肌肉的正常形态发生在斑马鱼运动的发展中起关键作用。 (C)2014国际差异化学会。由Elsevier B.V.发布。保留所有权利。

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