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p27Kip1 Acts Downstream of N-Cadherin-mediated Cell Adhesion to Promote Myogenesis beyond Cell Cycle Regulation

机译:p27Kip1行动的下游N-钙黏着蛋白介导的细胞粘附以促进超出细胞周期调控的成肌。

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摘要

It is widely acknowledged that cultured myoblasts can not differentiate at very low density. Here we analyzed the mechanism through which cell density influences myogenic differentiation in vitro. By comparing the behavior of C2C12 myoblasts at opposite cell densities, we found that, when cells are sparse, failure to undergo terminal differentiation is independent from cell cycle control and reflects the lack of p27Kip1 and MyoD in proliferating myoblasts. We show that inhibition of p27Kip1 expression impairs C2C12 cell differentiation at high density, while exogenous p27Kip1 allows low-density cultured C2C12 cells to enter the differentiative program by regulating MyoD levels in undifferentiated myoblasts. We also demonstrate that the early induction of p27Kip1 is a critical step of the N-cadherin-dependent signaling involved in myogenesis. Overall, our data support an active role of p27Kip1 in the decision of myoblasts to commit to terminal differentiation, distinct from the regulation of cell proliferation, and identify a pathway that, reasonably, operates in vivo during myogenesis and might be part of the phenomenon known as “community effect”.
机译:众所周知,培养的成肌细胞不能以非常低的密度分化。在这里,我们分析了细胞密度影响体外成肌分化的机制。通过比较C2C12成肌细胞在相反细胞密度下的行为,我们发现,当细胞稀疏时,无法进行终末分化的过程独立于细胞周期控制,这反映了p27 Kip1 和MyoD在增殖中的缺乏成肌细胞。我们发现抑制p27 Kip1 表达会损害高密度C2C12细胞的分化,而外源性p27 Kip1 允许低密度培养的C2C12细胞通过调节MyoD水平进入分化程序。在未分化的成肌细胞中。我们还证明了p27 Kip1 的早期诱导是参与成肌的N-钙粘着蛋白依赖性信号传导的关键步骤。总体而言,我们的数据支持p27 Kip1 在成肌细胞决定终末分化(不同于细胞增殖的调控)并确定在成肌过程中合理地在体内起作用的途径中起积极作用并且可能是被称为“社区效应”的现象的一部分。

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