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Dynamic formation of microenvironments at the myotendinous junction correlates with muscle fiber morphogenesis in zebrafish

机译:斑马鱼肌腱末端微环境的动态形成与肌纤维形态发生有关

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摘要

Muscle development involves the specification and morphogenesis of muscle fibers that attach to tendons. After attachment, muscles and tendons then function as an integrated unit to transduce force to the skeletal system and stabilize joints. The attachment site is the myotendinous junction, or MTJ, and is the primary site of force transmission. We find that attachment of fast-twitch myofibers to the MTJ correlates with the formation of novel microenvironments within the MTJ. The expression or activation of two proteins involved in anchoring the intracellular cytoskeleton to the extracellular matrix, Focal adhesion kinase (Fak) and β-dystroglycan is up-regulated. Conversely, the extracellular matrix protein Fibronectin (Fn) is down-regulated. This degradation of Fn as fast-twitch fibers attach to the MTJ results in Fn protein defining a novel microenvironment within the MTJ adjacent to slow-twitch, but not fast-twitch, muscle. Interestingly, however, Fak, laminin, Fn and β-dystroglycan concentrate at the MTJ in mutants that do not have slow-twitch fibers. Taken together, these data elucidate novel and dynamic microenvironments within the MTJ and indicate that MTJ morphogenesis is spatially and temporally complex.
机译:肌肉发育涉及附着于肌腱的肌肉纤维的规格和形态发生。附着后,肌肉和腱作为整合单元发挥功能,将力传递到骨骼系统并稳定关节。附着位点是肌腱连接点或MTJ,是力传递的主要位点。我们发现快速抽搐的肌纤维对MTJ的附着与MTJ内新的微环境的形成有关。参与将细胞内细胞骨架锚定至细胞外基质的两种蛋白质的表达或激活被上调,即黏着斑激酶(Fak)和β-dystroglycan。相反,细胞外基质蛋白纤连蛋白(Fn)被下调。 Fn的快速降解纤维附着在MTJ上导致Fn降解,导致Fn蛋白在MTJ内定义了一个新的微环境,该环境与慢速但不快速的肌肉相邻。然而,有趣的是,Fak,层粘连蛋白,Fn和β-dystroglycanan集中在MTJ中,突变体没有慢抽丝纤维。综上所述,这些数据阐明了MTJ内的新颖和动态微环境,并表明MTJ形态发生在空间和时间上都是复杂的。

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