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首页> 外文期刊>Developmental cell >GLI3 Constrains Digit Number by Controlling Both Progenitor Proliferation and BMP-Dependent Exit to Chondrogenesis
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GLI3 Constrains Digit Number by Controlling Both Progenitor Proliferation and BMP-Dependent Exit to Chondrogenesis

机译:GLI3通过控制祖细胞增殖和软骨形成的BMP依赖性出口来限制数字

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摘要

Inactivation of Gli3, a key component of Hedgehog signaling in vertebrates, results in formation of additional digits (polydactyly) during limb bud development. The analysis of mouse embryos constitutively lacking Gli3 has revealed the essential GLI3 functions in specifying the anteroposterior (AP) limb axis and digit identities. We conditionally inactivated Gli3 during mouse hand plate development, which uncoupled the resulting preaxial polydactyly from known GLI3 functions in establishing AP and digit identities. Our analysis revealed that GLI3 directly restricts the expression of regulators of the G 1-S cell-cycle transition such as Cdk6 and constrains S phase entry of digit progenitors in the anterior hand plate. Furthermore, GLI3 promotes the exit of proliferating progenitors toward BMP-dependent chondrogenic differentiation by spatiotemporally restricting and terminating the expression of the BMP antagonist Gremlin1. Thus, Gli3 is a negative regulator of the proliferative expansion of digit progenitors and acts as a gatekeeper for the exit to chondrogenic differentiation. GLI3 is an important regulator of digit number in tetrapods. Lopez-Rios et al. reveal the dual mechanism by which GLI3 directly restricts cell-cycle entry and proliferation and promotes BMP-dependent exit of digit progenitors to chondrogenesis. In . Gli3-deficient hand plates, additional digits form due to aberrant growth rather than defective patterning.
机译:Gli3的失活,脊椎动物的刺猬信号的关键组成部分,导致肢芽发育过程中形成更多手指(多指)。对组成型缺乏Gli3的小鼠胚胎的分析表明,在指定前后(AP)肢体轴和手指身份方面,GLI3具有重要的功能。我们在小鼠手板发育过程中有条件地使Gli3失活,从而在建立AP和数字身份时将所得的前轴多义性与已知的GLI3功能脱钩。我们的分析表明,GLI3直接限制了G 1-S细胞周期转换的调节子(如Cdk6)的表达,并限制了前祖板上指祖的S期进入。此外,GLI3通过时空限制和终止BMP拮抗剂Gremlin1的表达,促进增殖祖细胞向BMP依赖的软骨形成分化。因此,Gli3是指祖细胞增殖扩展的负调节剂,并充当软骨形成分化的出口的守门人。 GLI3是四足动物中数字位数的重要调节剂。 Lopez-Rios等。揭示了GLI3直接限制细胞周期进入和增殖并促进手指祖细胞BMP依赖性软骨形成的双重机制。在中。 Gli3缺损的手板,是由于异常生长而不是图案缺陷而形成的手指。

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