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首页> 外文期刊>Frontiers in Physiology >MYBPC1, an Emerging Myopathic Gene: What We Know and What We Need to Learn
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MYBPC1, an Emerging Myopathic Gene: What We Know and What We Need to Learn

机译: MYBPC1 ,一个新兴的肌病基因:我们知道什么以及我们需要学习什么

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Myosin Binding Protein-C (MyBP-C) comprises a family of accessory proteins that includes the cardiac, slow skeletal, and fast skeletal isoforms. The three isoforms share structural and sequence homology, and localize at the C-zone of the sarcomeric A-band where they interact with thick and thin filaments to regulate the cycling of actomyosin crossbridges. The cardiac isoform, encoded by MYBPC3 , has been extensively studied over the last several decades due to its high mutational rate in congenital hypertrophic and dilated cardiomyopathy. It is only recently, however, that the MYBPC1 gene encoding the slow skeletal isoform (sMyBP-C) has gained attention. Accordingly, during the last 5 years it has been shown that MYBPC1 undergoes extensive exon shuffling resulting in the generation of multiple slow variants, which are co-expressed in different combinations and amounts in both slow and fast skeletal muscles. The sMyBP-C variants are subjected to PKA- and PKC-mediated phosphorylation in constitutive and alternatively spliced sites. More importantly, missense, and nonsense mutations in MYBPC1 have been directly linked with the development of severe and lethal forms of distal arthrogryposis myopathy and muscle tremors. Currently, there is no mammalian animal model of sMyBP-C, but new technologies including CRISPR/Cas9 and xenografting of human biopsies into immunodeficient mice could provide unique ways to study the regulation and roles of sMyBP-C in health and disease.
机译:肌球蛋白结合蛋白C(MyBP-C)包括一系列辅助蛋白,包括心脏,慢速骨骼和快速骨骼亚型。这三种同工型具有相同的结构和序列同源性,并位于肌节A带的C区,在此处它们与细丝和细丝相互作用,以调节肌动球蛋白横桥的循环。由于MYBPC3编码的心脏同工型在先天性肥厚性和扩张型心肌病中具有很高的突变率,因此在过去的几十年中已经得到了广泛的研究。然而,直到最近,编码慢骨骼同工型(sMyBP-C)的MYBPC1基因才引起关注。因此,在最近的5年中,已经证明MYBPC1经历了广泛的外显子改组,导致产生了多个慢变体,这些慢变体以不同的组合和量在慢和快骨骼肌中共表达。 sMyBP-C变异体在组成位点和剪接位点经历了PKA和PKC介导的磷酸化。更重要的是,MYBPC1中的错义和无意义的突变已与远端关节置换术肌病和肌肉震颤的严重和致命形式的发展直接相关。目前,尚无哺乳动物sMyBP-C的动物模型,但包括CRISPR / Cas9和人类活组织检查异种移植到免疫缺陷小鼠中的新技术可以提供独特的方法来研究sMyBP-C在健康和疾病中的调控作用。

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