Wu Jinling, O'Donnell Michael, Gitler Aaron D, Klein Peter S
Cell and Molecular Biology Graduate Group, University of Pennsylvania School of Medicine, Philadelphia, PA 19104, USA.
Development. 2006 Sep;133(18):3651-60. doi: 10.1242/dev.02547. Epub 2006 Aug 16.
GIPC is a PDZ-domain-containing protein identified in vertebrate and invertebrate organisms through its interaction with a variety of binding partners including many membrane proteins. Despite the multiple reports identifying GIPC, its endogenous function and the physiological significance of these interactions are much less studied. We have previously identified the Xenopus GIPC homolog kermit as a frizzled 3 interacting protein that is required for frizzled 3 induction of neural crest in ectodermal explants. We identified a second Xenopus GIPC homolog, named kermit 2 (also recently described as an IGF receptor interacting protein and named XGIPC). Despite its high amino acid similarity with kermit, kermit 2/XGIPC has a distinct function in Xenopus embryos. Loss-of-function analysis indicates that kermit 2/XGIPC is specifically required for Xenopus eye development. Kermit 2/XGIPC functions downstream of IGF in eye formation and is required for maintaining IGF-induced AKT activation. A constitutively active PI3 kinase partially rescues the Kermit 2/XGIPC loss-of-function phenotype. Our results provide the first in vivo loss of function analysis of GIPC in embryonic development and also indicate that kermit 2/XGIPC is a novel component of the IGF pathway, potentially functioning through modulation of the IGF1 receptor.
GIPC是一种含有PDZ结构域的蛋白质,通过与包括许多膜蛋白在内的多种结合伴侣相互作用,在脊椎动物和无脊椎动物中被鉴定出来。尽管有多项报道鉴定了GIPC,但其内源性功能以及这些相互作用的生理意义却鲜有研究。我们之前已将非洲爪蟾GIPC同源物克米特鉴定为一种卷曲蛋白3相互作用蛋白,它是外胚层外植体中神经嵴卷曲蛋白3诱导所必需的。我们鉴定出了第二个非洲爪蟾GIPC同源物,命名为克米特2(最近也被描述为一种胰岛素样生长因子受体相互作用蛋白,并命名为XGIPC)。尽管克米特2/XGIPC与克米特具有高度的氨基酸相似性,但它在非洲爪蟾胚胎中具有独特的功能。功能缺失分析表明,克米特2/XGIPC是非洲爪蟾眼睛发育所特需的。克米特2/XGIPC在眼睛形成过程中在胰岛素样生长因子下游发挥作用,是维持胰岛素样生长因子诱导的AKT激活所必需的。一种组成型活性PI3激酶可部分挽救克米特2/XGIPC功能缺失的表型。我们的结果首次提供了GIPC在胚胎发育中的体内功能缺失分析,也表明克米特2/XGIPC是胰岛素样生长因子途径的一个新组分,可能通过调节胰岛素样生长因子1受体发挥作用。