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Studies on epidermal growth factor receptor signaling in vertebrate limb patterning.

机译:脊椎动物肢体模式中表皮生长因子受体信号传导的研究。

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The epidermal growth factor receptor (EGFR) regulates multiple patterning events in Drosophila limb development, but its role in vertebrate limb morphogenesis has received little attention. The EGFR and several of its ligands are expressed in developing vertebrate limbs in manners consistent with potential patterning roles. To gain insight into functions of EGFR signaling in vertebrate limb development, we expressed a constitutively active EGFR in developing chick limbs in ovo. Expression of activated EGFR causes pre- and postaxial polydactyly, including mirror-image-type digit duplication, likely due to induction of ectopic expression and/or modulation of genes involved in anterior-posterior (AP) patterning such as Sonic hedgehog (Shh), dHand, Patched (Ptc), Gli3, Hoxd13, Hoxd11, bone morphogenetic protein 2 (Bmp2), Gremlin, and FGF4. Activation of EGFR signaling dorsalizes the limb and alters expression of the dorsal-ventral (DV) patterning genes Wnt7a, Lmx, and En1. Ectopic and/or extended FGF8 expressing apical ectodermal ridges (AERs) are also seen. Interdigital regression is inhibited and the digits fail to separate, leading to syndactyly, likely due to antiapoptotic and pro-proliferative effects of activated EGFR signaling on limb mesoderm, and/or attenuation of interdigital Bmp4 expression. These findings suggest potential roles for EGFR signaling in AP and DV patterning, AER formation, and cell survival during limb morphogenesis.
机译:表皮生长因子受体(EGFR)调节果蝇肢体发育中的多种模式事件,但其在脊椎动物肢体形态发生中的作用鲜为人知。 EGFR及其几个配体在发育中的脊椎动物肢体中以与潜在构图作用一致的方式表达。为了深入了解EGFR信号在脊椎动物肢体发育中的功能,我们在卵内发育中的雏鸡肢体中表达了一种组成型活性EGFR。活化EGFR的表达会引起前后轴多指畸变,包括镜像类型的数字重复,这可能是由于异位表达的诱导和/或涉及前后音(AP)模式的基因(例如声波刺猬(Shh))的调节, dHand,Patched(Ptc),Gli3,Hoxd13,Hoxd11,骨形态发生蛋白2(Bmp2),Gremlin和FGF4。 EGFR信号传导的激活使肢体背侧化,并改变背腹(DV)模式基因Wnt7a,Lmx和En1的表达。还可以看到表达异位和/或扩展的FGF8根尖外胚层(AER)。指间消退受到抑制,并且手指未能分开,导致合成障碍,这可能是由于激活的EGFR信号传导对肢体中胚层的抗凋亡和促增殖作用和/或指间Bmp4表达的减弱。这些发现提示EGFR信号传导在肢体形态发生过程中AP和DV模式,AER形成和细胞存活中的潜在作用。

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