Department of Pharmacology, Max-Planck-Institute for Heart and Lung Research, 61231 Bad Nauheim, Germany.
Proc Natl Acad Sci U S A. 2014 Feb 11;111(6):2194-9. doi: 10.1073/pnas.1308418111. Epub 2014 Jan 27.
Mammalian plexins constitute a family of transmembrane receptors for semaphorins and represent critical regulators of various processes during development of the nervous, cardiovascular, skeletal, and renal system. In vitro studies have shown that plexins exert their effects via an intracellular R-Ras/M-Ras GTPase-activating protein (GAP) domain or by activation of RhoA through interaction with Rho guanine nucleotide exchange factor proteins. However, which of these signaling pathways are relevant for plexin functions in vivo is largely unknown. Using an allelic series of transgenic mice, we show that the GAP domain of plexins constitutes their key signaling module during development. Mice in which endogenous Plexin-B2 or Plexin-D1 is replaced by transgenic versions harboring mutations in the GAP domain recapitulate the phenotypes of the respective null mutants in the developing nervous, vascular, and skeletal system. We further provide genetic evidence that, unexpectedly, the GAP domain-mediated developmental functions of plexins are not brought about via R-Ras and M-Ras inactivation. In contrast to the GAP domain mutants, Plexin-B2 transgenic mice defective in Rho guanine nucleotide exchange factor binding are viable and fertile but exhibit abnormal development of the liver vasculature. Our genetic analyses uncover the in vivo context-dependence and functional specificity of individual plexin-mediated signaling pathways during development.
哺乳动物的神经纤毛蛋白构成了一个跨膜受体家族,用于接收信号素,并在神经系统、心血管系统、骨骼系统和肾脏系统的发育过程中充当关键的调控因子。体外研究表明,神经纤毛蛋白通过细胞内 R-Ras/M-Ras GTP 酶激活蛋白(GAP)结构域发挥作用,或者通过与 Rho 鸟嘌呤核苷酸交换因子蛋白相互作用来激活 RhoA。然而,这些信号通路中的哪些对于神经纤毛蛋白在体内的功能是重要的,在很大程度上还不清楚。我们利用一系列等位基因的转基因小鼠,表明神经纤毛蛋白的 GAP 结构域是其在发育过程中的关键信号模块。用携带 GAP 结构域突变的转基因版本替代内源性 Plexin-B2 或 Plexin-D1 的小鼠,重现了相应的神经、血管和骨骼系统发育中缺失突变体的表型。我们进一步提供了遗传证据,表明出人意料的是,GAP 结构域介导的神经纤毛蛋白的发育功能不是通过 R-Ras 和 M-Ras 的失活来实现的。与 GAP 结构域突变体相反,Rho 鸟嘌呤核苷酸交换因子结合缺陷的 Plexin-B2 转基因小鼠具有活力和生育能力,但肝脏血管系统发育异常。我们的遗传分析揭示了在发育过程中单个神经纤毛蛋白介导的信号通路的体内上下文依赖性和功能特异性。