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Sufu and Kif7 in Limb Patterning and Development

机译:Sufu和Kif7在肢体形成和发展中的作用

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Background: The vertebrate digit pattern is defined by the morphogen Sonic hedgehog (Shh), which controls the activity of Gli transcription factors. Gli1, 2 and 3 are dynamically expressed during patterning. Downstream of Shh, their activity is regulated by Sufu and Kif7, core components of the Shh signaling cascade. The precise roles of these regulators during limb development have not been fully described. We analyze the role of Sufu and Kif7 in the limb and demonstrate that their loss has distinct and synergistic effects on Gli activity and digit pattern. Results: Using a series of mouse mutants, we show that Sufu and Kif7 are expressed throughout limb development and their deletion has distinct effects on Gli levels and limb formation. Concomitant deletion of Sufu and Kif7 results in constitutive pathway activity and severe limb truncation. This is consistent with the recently published two-population model, which suggests that precocious activation of Shh signaling inhibits organizing center formation and limb outgrowth. Conclusions: Together, our findings demonstrate that perturbations of Sufu and Kif7 affect Gli activity and recapitulate the full spectrum of vertebrate limb defects, ranging from severe truncation to polydactyly. Developmental Dynamics 244:468-478, 2015. (c) 2014 Wiley Periodicals, Inc.
机译:背景:脊椎动物的手指模式是由控制Gli转录因子活性的Sogen Hedgehog(Shh)形成的。 Gli1、2和3在构图期间动态表达。 Shh的下游,其活性受Shh信号级联反应的核心成分Sufu和Kif7调控。这些调节器在肢体发育过程中的确切作用尚未完全描述。我们分析了Sufu和Kif7在肢体中的作用,并证明了它们的丢失对Gli活性和手指图形有明显的协同作用。结果:使用一系列小鼠突变体,我们显示Sufu和Kif7在整个肢体发育过程中表达,其缺失对Gli水平和肢体形成有明显影响。 Sufu和Kif7的同时缺失导致本构途径活性和严重的四肢截断。这与最近发表的两种群模型一致,该模型表明Shh信号的过早激活会抑制组织中心的形成和四肢的长出。结论:我们的研究结果共同表明,Sufu和Kif7的摄动会影响Gli活性并概括脊椎动物肢体缺损的整个范围,从严重截短到多指畸形。发展动态244:468-478,2015年。(c)2014 Wiley Periodicals,Inc.

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