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整合素连接激酶(ILK)中与桩蛋白结合位点的突变会使伪激酶结构域不稳定,并导致小鼠胚胎致死。

Mutations in the paxillin-binding site of integrin-linked kinase (ILK) destabilize the pseudokinase domain and cause embryonic lethality in mice.

机构信息

Department of Molecular Medicine, Max Planck Institute of Biochemistry, 82152 Martinsried, Germany.

出版信息

J Biol Chem. 2013 Jun 28;288(26):18863-71. doi: 10.1074/jbc.M113.470476. Epub 2013 May 8.

Abstract

Integrin-linked kinase (ILK) localizes to focal adhesions (FAs) where it regulates cell spreading, migration, and growth factor receptor signaling. Previous reports showed that overexpressed ILK in which Val(386) and Thr(387) were substituted with glycine residues (ILK-VT/GG) could neither interact with paxillin nor localize to FA in cells expressing endogenous wild-type ILK, implying that paxillin binding to ILK is required for its localization to FAs. Here, we show that introducing this mutation into the germ line of mice (ILK-VT/GG) caused vasculogenesis defects, resulting in a general developmental delay and death at around embryonic day 12.5. Fibroblasts isolated from ILK-VT/GG mice contained mutant ILK in FAs, showed normal adhesion to and spreading on extracellular matrix substrates but displayed impaired migration. Biochemical analysis revealed that VT/GG substitutions decreased ILK protein stability leading to decreased ILK levels and reduced binding to paxillin and α-parvin. Because paxillin depletion did not affect ILK localization to FAs, the embryonic lethality and the in vitro migration defects are likely due to the reduced levels of ILK-VT/GG and diminished binding to parvins.

摘要

整合素连接激酶 (ILK) 定位于黏着斑 (FA) 中,在那里它调节细胞铺展、迁移和生长因子受体信号。先前的报告表明,过表达的 ILK 中 Val(386)和 Thr(387)被甘氨酸残基取代 (ILK-VT/GG),既不能与桩蛋白相互作用,也不能在表达内源性野生型 ILK 的细胞中定位于 FA,这表明 ILK 与桩蛋白的结合对于其在 FA 中的定位是必需的。在这里,我们表明,将这种突变引入小鼠的种系 (ILK-VT/GG) 会导致血管发生缺陷,导致大约在胚胎第 12.5 天出现全面的发育延迟和死亡。从 ILK-VT/GG 小鼠中分离出的成纤维细胞在 FA 中含有突变的 ILK,对细胞外基质底物的黏附和铺展显示正常,但迁移能力受损。生化分析表明,VT/GG 取代降低了 ILK 蛋白稳定性,导致 ILK 水平降低,并减少了与桩蛋白和α-辅肌动蛋白的结合。由于桩蛋白耗竭不影响 ILK 向 FA 的定位,因此胚胎致死和体外迁移缺陷可能是由于 ILK-VT/GG 水平降低和与辅肌动蛋白结合减少所致。

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