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CRKL在成纤维细胞生长因子8诱导的前馈环中作用的结构和功能基础

Structural and functional basis of a role for CRKL in a fibroblast growth factor 8-induced feed-forward loop.

作者信息

Seo Ji-Heui, Suenaga Atsushi, Hatakeyama Mariko, Taiji Makoto, Imamoto Akira

机构信息

Ben May Department for Cancer Research, University of Chicago, Chicago, Illinois 60637, USA.

出版信息

Mol Cell Biol. 2009 Jun;29(11):3076-87. doi: 10.1128/MCB.01686-08. Epub 2009 Mar 23.

Abstract

The adapter protein CRKL is required for the normal development of multiple tissues that rely on fibroblast growth factor 8 (FGF8). The precise role of CRKL in receptor signaling has been unclear, however. To address this issue, we first modeled the three-dimensional structure of CRKL by molecular dynamics. By taking advantage of structural simulations, we performed in silico analysis of the interactions of the autophosphorylation sites of FGR receptor 1 (FGFR1) with the SH2 domain of CRKL or a highly related protein, CRK. As predicted by simulations, we confirm the specific physical interaction of phosphorylated Y463 (pY463) in FGFR1 with the CRKL SH2 domain at an affinity approximately 30-fold stronger than that of CRK. We also provide evidence that interactions outside of the core YXXP motif have a significant impact on physical association, which is consistent with predictions from molecular-dynamics simulations. Furthermore, we identify CRKL as an essential component of an FGF8-induced feed-forward loop permissive for efficient activation of the mitogen-activated protein kinase Erk1/2, as well as FGF8-induced anchorage-independent cell growth, using Crkl-deficient cells or a pY463 synthetic peptide. Although many cells generally require cell-matrix adhesion, our results demonstrate that CRKL permits cells to bypass the strict need for adhesion in response to FGF8 through direct interaction with receptor.

摘要

衔接蛋白CRKL是依赖成纤维细胞生长因子8(FGF8)的多种组织正常发育所必需的。然而,CRKL在受体信号传导中的精确作用尚不清楚。为了解决这个问题,我们首先通过分子动力学对CRKL的三维结构进行建模。利用结构模拟,我们对FGR受体1(FGFR1)的自磷酸化位点与CRKL或高度相关蛋白CRK的SH2结构域之间的相互作用进行了计算机模拟分析。正如模拟所预测的,我们证实了FGFR1中磷酸化的Y463(pY463)与CRKL SH2结构域之间存在特异性物理相互作用,其亲和力比CRK强约30倍。我们还提供证据表明,核心YXXP基序之外的相互作用对物理缔合有重大影响,这与分子动力学模拟的预测一致。此外,我们使用Crkl缺陷细胞或pY463合成肽,确定CRKL是FGF8诱导的前馈环的重要组成部分,该前馈环允许丝裂原活化蛋白激酶Erk1/2有效激活,以及FGF8诱导的不依赖贴壁的细胞生长。尽管许多细胞通常需要细胞与基质的粘附,但我们的结果表明,CRKL允许细胞通过与受体的直接相互作用,绕过对FGF8响应中严格的粘附需求。

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