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Loss of connexin43-mediated gap junctional coupling in the mesenchyme of limb buds leads to altered expression of morphogens in mice

机译:肢芽芽间充质中连接蛋白43介导的间隙连接缺失的丧失导致小鼠形态发生子表达的改变

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Mutations in the GJA1 gene coding for connexin43 (Cx43) cause oculodentodigital dysplasia (ODDD), a pleiotropic human disorder with characteristic morphologic anomalies of face, teeth, bones and digits. Interdigital webbings, also called syndactylies, are a characteristic phenotype of this disease showing high intra- and interfamilial penetrance. Therefore, we decided to study the molecular basis of syndactylies caused by Cx43 mutations. In order to reveal the impact of Cx43-mediated gap junctional coupling, we used mice expressing the human point mutation Cx43G138R and, in addition, ‘knock-out’ mice lacking Cx43. Both conditional mouse models developed syndactylies as a consequence of disturbed interdigital apoptosis, which we show to be due to reduced expression of two key morphogens: sonic hedgehog (Shh) and bone morphogenic protein 2 (Bmp2). Diminished levels of Bmp2 and subsequent up-regulation of fibroblast growth factors (Fgfs) lead to an insufficient induction of interdigital apoptosis. Interestingly, the reduction of Shh expression in Cx43 mutants begins on embryonic day 10.5 indicating a disturbance of the Fgf/Shh regulatory feedback loop, and confirming the recently published observation that gap junctions can relay Fgf signals to neighboring cells. Thus, Cx43-mediated gap junctional coupling in the mesenchyme of limb buds after ED11 is essential to maintain Shh expression, which regulates the downstream signaling of Bmp2. Besides diminished interdigital apoptosis, the decreased expression of Bmp2 in Cx43 mutants may also be involved in other morphological alterations in patients suffering from ODDD.
机译:编码连接蛋白43(Cx43)的GJA1基因突变导致眼睑数字发育异常(ODDD),这是一种多效性人类疾病,具有面部,牙齿,骨骼和手指的特征形态异常。叉指状织带,也称为综合征,是该疾病的特征表型,表现出较高的家族内和家族间渗透率。因此,我们决定研究由Cx43突变引起的组织学的分子基础。为了揭示Cx43介导的间隙连接偶联的影响,我们使用了表达人类点突变Cx43G138R的小鼠,以及缺少Cx43的“敲除”小鼠。两种条件小鼠模型都由于趾间凋亡的紊乱而发展为综合征,这表明这归因于两种关键形态发生子(声波刺猬(Shh)和骨形态发生蛋白2(Bmp2))的表达降低。 Bmp2水平降低和随后的成纤维细胞生长因子(Fgfs)上调导致对指间凋亡的诱导不足。有趣的是,Cx43突变体中Shh表达的降低始于胚胎第10.5天,表明Fgf / Shh调节反馈回路受到干扰,并证实了最近发表的观察,即间隙连接可以将Fgf信号传递至邻近细胞。因此,ED11后肢芽芽间充质中Cx43介导的间隙连接偶联对维持Shh表达至关重要,后者可调节Bmp2的下游信号传导。除了减少叉指间的凋亡外,Cx43突变体中Bmp2表达的降低也可能与ODDD患者的其他形态学改变有关。

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