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An autoregulatory cell cycle timer integrates growth and specification in chick wing digit development

机译:自动调节细胞周期计时器将生长和规格整合到鸡翅数字发育中

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摘要

A fundamental question is how proliferation and growth are timed during embryogenesis. Although it has been suggested that the cell cycle could be a timer, the underlying mechanisms remain elusive. Here we describe a cell cycle timer that operates in Sonic hedgehog (Shh)-expressing polarising region cells of the chick wing bud. Our data are consistent with Shh signalling stimulating polarising region cell proliferation via Cyclin D2, and then inhibiting proliferation via a Bmp2-p27kip1 pathway. When Shh signalling is blocked, polarising region cells over-proliferate and form an additional digit, which can be prevented by applying Bmp2 or by inhibiting D cyclin activity. In addition, Bmp2 also restores posterior digit identity in the absence of Shh signalling, thus indicating that it specifies antero-posterior (thumb to little finger) positional values. Our results reveal how an autoregulatory cell cycle timer integrates growth and specification and are widely applicable to many tissues.
机译:一个基本的问题是在胚胎发生过程中如何定时增殖和生长。尽管已经提出细胞周期可以是计时器,但是潜在的机制仍然难以捉摸。在这里,我们描述了一个细胞周期计时器,该计时器在表达鸡翅芽的Sonic刺猬(Shh)极化区域细胞中工作。我们的数据与Shh信号通过Cyclin D2刺激极化区域细胞增殖,然后通过Bmp2-p27 kip1 途径抑制增殖相一致。当Shh信号被阻断时,极化区域细胞过度增殖并形成一个额外的手指,可以通过应用Bmp2或抑制D cyclin活性来防止。另外,在没有Shh信号的情况下,Bmp2还可以恢复后数字的同一性,从而表明它指定了前后(拇指到小指)位置值。我们的结果揭示了自动调节细胞周期计时器如何结合生长和规格,并广泛适用于许多组织。

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