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Interactions among ryanodine receptor isotypes contribute to muscle fiber type development and function

机译:ryanodine受体同种型之间的相互作用有助于肌肉纤维型发育和功能

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Mutations affecting ryanodine receptor (RyR) calcium release channels commonly underlie congenital myopathies. Although these channels are known principally for their essential roles in muscle contractility, mutations in the human RYR1 gene result in a broad spectrum of phenotypes, including muscle weakness, altered proportions of fiber types, anomalous muscle fibers with cores or centrally placed nuclei, and dysmorphic craniofacial features. Currently, it is unknown which phenotypes directly reflect requirements for RyRs and which result secondarily to aberrant muscle function. To identify biological processes requiring RyR function, skeletal muscle development was analyzed in zebrafish embryos harboring protein-null mutations. RyR channels contribute to both muscle fiber development and function. Loss of some RyRs had modest effects, altering muscle fiber-type specification in the embryo without compromising viability. In addition, each RyR-encoding gene contributed to normal swimming behavior and muscle function. The RyR channels do not function in a simple additive manner. For example, although isoform RyR1a is sufficient for muscle contraction in the absence of RyR1b, RyR1a normally attenuates the activity of the co-expressed RyR1b channel in slow muscle. RyR3 also acts to modify the functions of other RyR channels. Furthermore, diminished RyR-dependent contractility affects both muscle fiber maturation and craniofacial development. These findings help to explain some of the heterogeneity of phenotypes that accompany RyR1 mutations in humans.
机译:影响ryanodine受体(Ryr)钙释放通道的突变通常是先天性近视病变。虽然这些频道主要用于肌肉收缩性的基本作用,但人Ryr1基因中的突变导致广谱的表型,包括肌肉无力,纤维类型的比例改变,具有核心的异常肌肉纤维,或中央置位核,令人讨厌颅面特征。目前,它未知哪种表型直接反映了RγRS的要求,其结果是异常肌肉功能。为了鉴定需要Rγ函数的生物学过程,在斑马鱼胚胎含有蛋白质突变的骨髓胚胎中分析了骨骼肌发育。 RYR通道有助于肌肉纤维发育和功能。一些RYR的丧失具有适度的效果,改变胚胎中的肌肉纤维型规格而不会影响活力。此外,每个RYR编码基因导致正常的游泳行为和肌肉功能。 RYR通道不能以简单的添加方式起作用。例如,虽然同种型Ryr1a在没有Rγ1的情况下足以肌肉收缩,但Ryr1a通常衰减在慢肌中的共表达Ryr1b通道的活性。 Ryr3还采用修改其他RYR通道的功能。此外,Ryr依赖性收缩性降低影响肌纤维成熟和颅面发育。这些发现有助于解释人类Ryr1突变的表型的一些异质性。

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