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Sos1/Grb2 的相互作用域经过精细调整,以实现对胚胎干细胞命运的协同控制。

Interaction domains of Sos1/Grb2 are finely tuned for cooperative control of embryonic stem cell fate.

机构信息

Samuel Lunenfeld Research Institute, Mount Sinai Hospital, Toronto, ON M5G 1X5, Canada.

出版信息

Cell. 2013 Feb 28;152(5):1008-20. doi: 10.1016/j.cell.2013.01.056.

Abstract

Metazoan evolution involves increasing protein domain complexity, but how this relates to control of biological decisions remains uncertain. The Ras guanine nucleotide exchange factor (RasGEF) Sos1 and its adaptor Grb2 are multidomain proteins that couple fibroblast growth factor (FGF) signaling to activation of the Ras-Erk pathway during mammalian development and drive embryonic stem cells toward the primitive endoderm (PrE) lineage. We show that the ability of Sos1/Grb2 to appropriately regulate pluripotency and differentiation factors and to initiate PrE development requires collective binding of multiple Sos1/Grb2 domains to their protein and phospholipid ligands. This provides a cooperative system that only allows lineage commitment when all ligand-binding domains are occupied. Furthermore, our results indicate that the interaction domains of Sos1 and Grb2 have evolved so as to bind ligands not with maximal strength but with specificities and affinities that maintain cooperativity. This optimized system ensures that PrE lineage commitment occurs in a timely and selective manner during embryogenesis.

摘要

后生动物的进化涉及到蛋白质结构域复杂性的增加,但这与生物决策的控制有何关系尚不清楚。Ras 鸟嘌呤核苷酸交换因子(RasGEF)Sos1 及其衔接蛋白 Grb2 是多功能蛋白,在哺乳动物发育过程中,它们将成纤维细胞生长因子(FGF)信号传递到 Ras-Erk 途径的激活,驱动胚胎干细胞向原始内胚层(PrE)谱系。我们表明,Sos1/Grb2 适当调节多能性和分化因子以及启动 PrE 发育的能力需要多个 Sos1/Grb2 结构域集体结合到它们的蛋白质和磷脂配体上。这提供了一个协作系统,只有当所有配体结合结构域都被占据时,才允许谱系承诺。此外,我们的结果表明,Sos1 和 Grb2 的相互作用结构域已经进化,以便以保持协同性的特异性和亲和力而不是最大强度与配体结合。这个优化的系统确保了 PrE 谱系承诺在胚胎发生过程中以适时和选择性的方式发生。

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