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首页> 外文期刊>Frontiers in Cell and Developmental Biology >Planarian Body-Wall Muscle: Regeneration and Function beyond a Simple Skeletal Support
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Planarian Body-Wall Muscle: Regeneration and Function beyond a Simple Skeletal Support

机译:扁平肌壁肌肉:再生和功能超出简单的骨骼支持

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The body-wall musculature of adult planarians consists of intricately organized muscle fibers, which after amputation are regenerated rapidly and with great precision through the proliferation and differentiation of pluripotent stem cells. These traits make the planarian body-wall musculature a potentially useful model for the study of cell proliferation, differentiation, and pattern formation. Planarian body-wall muscle shows some ambiguous features common to both skeletal and smooth muscle cells. However, its skeletal nature is implied by the expression of skeletal myosin heavy-chain genes and the myogenic transcription factor myoD. Where and when planarian stem cells become committed to the myogenic lineage during regeneration, how the new muscle cells are integrated into the pre-existing muscle net, and the identity of the molecular pathway controlling the myogenic gene program are key aspects of planarian muscle regeneration that need to be addressed. Expression of the conserved transcription factor myoD has been recently demonstrated in putative myogenic progenitors. Moreover, recent studies suggest that differentiated muscle cells may provide positional information to planarian stem cells during regeneration. Here, I review the limited available knowledge on planarian muscle regeneration.
机译:成年涡虫的体壁肌肉组织由错综复杂的肌肉纤维组成,截肢后,这些肌肉纤维通过多能干细胞的增殖和分化而迅速且高精度地再生。这些特征使涡虫体壁肌肉组织成为研究细胞增殖,分化和模式形成的潜在有用模型。扁平肌体壁肌肉显示出骨骼肌和平滑肌细胞共有的一些模糊特征。然而,骨骼肌肌球蛋白重链基因的表达和成肌转录因子myoD暗示了其骨骼性质。涡虫干细胞在再生过程中何时何地成为肌系谱系,新的肌肉细胞如何整合到先前存在的肌网中,以及控制肌源性基因程序的分子途径的识别是涡虫肌再生的关键方面,需要解决。保守的转录因子myoD的表达最近在推定的成肌祖细胞中得到证实。此外,最近的研究表明,分化的肌肉细胞可能在再生过程中为涡虫干细胞提供位置信息。在这里,我回顾了有关平面肌再生的有限知识。

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