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首页> 外文期刊>Nature Communications >Spatiotemporal regulation of the GPCR activity of BAI3 by C1qL4 and Stabilin-2 controls myoblast fusion
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Spatiotemporal regulation of the GPCR activity of BAI3 by C1qL4 and Stabilin-2 controls myoblast fusion

机译:C1qL4和Stabilin-2对BAI3 GPCR活性的时空调节控制成肌细胞融合

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Myoblast fusion is tightly regulated during development and regeneration of muscle fibers. BAI3 is a receptor that orchestrates myoblast fusion via Elmo/Dock1 signaling, but the mechanisms regulating its activity remain elusive. Here we report that mice lacking BAI3 display small muscle fibers and inefficient muscle regeneration after cardiotoxin-induced injury. We describe two proteins that repress or activate BAI3 in muscle progenitors. We find that the secreted C1q-like1–4 proteins repress fusion by specifically interacting with BAI3. Using a proteomic approach, we identify Stabilin-2 as a protein that interacts with BAI3 and stimulates its fusion promoting activity. We demonstrate that Stabilin-2 activates the GPCR activity of BAI3. The resulting activated heterotrimeric G-proteins contribute to the initial recruitment of Elmo proteins to the membrane, which are then stabilized on BAI3 through a direct interaction. Collectively, our results demonstrate that the activity of BAI3 is spatiotemporally regulated by C1qL4 and Stabilin-2 during myoblast fusion.
机译:成肌细胞融合在肌肉纤维的发育和再生过程中受到严格调节。 BAI3是一种通过Elmo / Dock1信号来协调成肌细胞融合的受体,但调节其活性的机制仍然难以捉摸。在这里,我们报道缺少BAI3的小鼠在心毒素诱导的损伤后显示出小的肌肉纤维和无效的肌肉再生。我们描述了两种蛋白,它们可以抑制或激活肌肉祖细胞中的BAI3。我们发现,分泌的C1q-like1-4蛋白通过与BAI3特异性相互作用抑制融合。使用蛋白质组学方法,我们将Stabilin-2确定为与BAI3相互作用并刺激其融合促进活性的蛋白质。我们证明,Stabilin-2激活BAI3的GPCR活性。产生的活化的异源三聚体G蛋白有助于Elmo蛋白最初募集到膜上,然后通过直接相互作用将其稳定在BAI3上。总的来说,我们的结果表明在成肌细胞融合过程中,BAI3的活性受C1qL4和Stabilin-2时空调节。

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