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Myocyte Enhancer Factor 2 (MEF2) tethering to muscle selective A-kinase anchoring protein (mAKAP) is necessary for myogenic differentiation

机译:肌细胞选择性A-激酶锚定蛋白(MAKAP)的肌细胞增强剂因子2(MEF2)是肌遗传分化所必需的

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摘要

Differentiation of skeletal myoblast cells to functional myotubes involves highly regulated transcriptional dynamics. The myocyte enhancer factor 2 (MEF2) transcription factors are critical to this process, synergizing with the master regulator MyoD to promote muscle specific gene transcription. MEF2 is extensively regulated by myogenic stimuli, both transcriptionally and post-translationally, but to date there has been little progress in understanding how signals upstream of MEF2 are coordinated to produce a coherent response. In this study, we define a novel interaction between the muscle A-kinase anchoring protein (mAKAP) and MEF2 in skeletal muscle. Discrete domains of MEF2 and mAKAP bind directly. Their interaction was exploited to probe the function of mAKAP-tethered MEF2 during myogenic differentiation. Dominant interference of MEF2/mAKAP binding was sufficient to block MEF2 activation during the early stages of differentiation. Furthermore, extended expression of this disrupting domain effectively blocked myogenic differentiation, halting the formation of myotubes and decreasing expression of several differentiation markers. This study expands our understanding of the regulation of MEF2 in skeletal muscle and identifies the mAKAP scaffold as a facilitator of MEF2 transcription and myogenic differentiation.
机译:骨骼肌细胞的分化为功能性肌管涉及高度调节的转录动态。肌细胞增强剂因子2(MEF2)转录因子对该过程至关重要,与母稳压器Myod协同促进肌肉特异性基因转录。 MEF2广泛受到肌菌刺激的广泛监管,无论是如何转录和翻译,但迄今为止,了解MEF2上游的信号如何协调以产生连贯的反应时几乎没有进展。在这项研究中,我们在骨骼肌中定义了肌肉A-kinase锚定蛋白(MAKAP)和MEF2之间的新型相互作用。 MEF2和MAKAP的离散域直接绑定。探讨了它们的相互作用以探测MaCap-Tethered MeF2在肌遗传学中的分化。 MEF2 / makap结合的显性干扰足以阻断在分化的早期阶段期间的MEF2活化。此外,这种破坏域的延长表达有效地阻断了肌原遗传学分化,停止形成肌管的形成并降低几种分化标志物的表达。本研究扩大了我们对骨骼肌中MEF2调节的理解,并将Makap脚手架识别为MEF2转录和肌遗传分化的辅导员。

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