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patched 1是脊椎动物肢体不对称性和指(趾)数量的关键决定因素。

Patched 1 is a crucial determinant of asymmetry and digit number in the vertebrate limb.

作者信息

Butterfield Natalie C, Metzis Vicki, McGlinn Edwina, Bruce Stephen J, Wainwright Brandon J, Wicking Carol

机构信息

The University of Queensland, Institute for Molecular Bioscience, Queensland, Australia.

出版信息

Development. 2009 Oct;136(20):3515-24. doi: 10.1242/dev.037507.

Abstract

The vertebrate hedgehog receptor patched 1 (Ptc1) is crucial for negative regulation of the sonic hedgehog (Shh) pathway during anterior-posterior patterning of the limb. We have conditionally inactivated Ptc1 in the mesenchyme of the mouse limb using Prx1-Cre. This results in constitutive activation of hedgehog (Hh) signalling during the early stages of limb budding. Our data suggest that variations in the timing and efficiency of Cre-mediated excision result in differential forelimb and hindlimb phenotypes. Hindlimbs display polydactyly (gain of digits) and a molecular profile similar to the Gli3 mutant extra-toes. Strikingly, forelimbs are predominantly oligodactylous (displaying a loss of digits), with a symmetrical, mirror-image molecular profile that is consistent with re-specification of the anterior forelimb to a posterior identity. Our data suggest that this is related to very early inactivation of Ptc1 in the forelimb perturbing the gene regulatory networks responsible for both the pre-patterning and the subsequent patterning stages of limb development. These results establish the importance of the downstream consequences of Hh pathway repression, and identify Ptc1 as a key player in limb patterning even prior to the onset of Shh expression.

摘要

脊椎动物的刺猬受体patched 1(Ptc1)在肢体前后模式形成过程中对音猬因子(Shh)信号通路的负调控至关重要。我们利用Prx1-Cre在小鼠肢体间充质中条件性失活Ptc1。这导致在肢体芽形成的早期阶段刺猬(Hh)信号通路的组成性激活。我们的数据表明,Cre介导的切除在时间和效率上的差异导致了不同的前肢和后肢表型。后肢表现为多指(指增多),其分子特征类似于Gli3突变体的多指。引人注目的是,前肢主要表现为少指(指减少),具有对称的镜像分子特征,这与前肢前部重新指定为后部身份一致。我们的数据表明,这与前肢中Ptc1的极早期失活有关,它扰乱了负责肢体发育的预模式和后续模式阶段的基因调控网络。这些结果确立了Hh信号通路抑制的下游后果的重要性,并确定Ptc1即使在Shh表达开始之前就是肢体模式形成中的关键参与者。

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