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Phosphorylation of threonine 1736 in the C-terminal tail of integrin β4 contributes to hemidesmosome disassembly

机译:整合素β4的C末端尾部苏氨酸1736的磷酸化有助于半桥粒的拆卸

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摘要

During wound healing, hemidesmome disassembly enables keratinocyte migration and proliferation. Hemidesmosome dynamics are altered downstream of epidermal growth factor (EGF) receptor activation, following the phosphorylation of integrin β4 residues S1356 and S1364, which reduces the interaction with plectin; however, this event is insufficient to drive complete hemidesmome disassembly. In the studies reported here, we used a fluorescence resonance energy transfer–based assay to demonstrate that the connecting segment and carboxy-terminal tail of the β4 cytoplasmic domain interact, which facilitates the formation of a binding platform for plectin. In addition, analysis of a β4 mutant containing a phosphomimicking aspartic acid residue at T1736 in the C-tail suggests that phosphorylation of this residue regulates the interaction with the plectin plakin domain. The aspartic acid mutation of β4 T1736 impaired hemidesmosome formation in junctional epidermolysis associated with pyloric atresia/β4 keratinocytes. Furthermore, we show that T1736 is phosphorylated downstream of protein kinase C and EGF receptor activation and is a substrate for protein kinase D1 in vitro and in cells, which requires its translocation to the plasma membrane and subsequent activation. In conclusion, we identify T1736 as a novel phosphorylation site that contributes to the regulation of hemidesmome disassembly, a dynamically regulated process involving the concerted phosphorylation of multiple β4 residues.
机译:在伤口愈合过程中,血纤维瘤的分解使角质形成细胞迁移和增殖。整联蛋白β4残基S1356和S1364磷酸化后,半体动力学在表皮生长因子(EGF)受体激活的下游发生改变,从而减少了与凝集素的相互作用。但是,此事件不足以驱动完全的血纤维蛋白组拆卸。在本文报道的研究中,我们使用了基于荧光共振能量转移的分析方法,以证明β4细胞质结构域的连接段和羧基末端尾部相互作用,这有助于形成凝集素的结合平台。另外,对在C-尾T1736处含有磷酸化模拟天冬氨酸残基的β4突变体的分析表明,该残基的磷酸化调节了与凝集素素结构域的相互作用。 β4T1736的天冬氨酸突变会削弱与幽门闭锁/β4角质形成细胞有关的结缔表皮分解过程中的血球小体形成。此外,我们显示,T1736在蛋白激酶C和EGF受体激活的下游被磷酸化,并且是蛋白激酶D1在体外和细胞中的底物,需要将其转移到质膜并随后激活。总之,我们将T1736鉴定为一个新的磷酸化位点,该位点有助于调控hemidemome的分解,这是一个动态调控的过程,涉及多个β4残基的协同磷酸化。

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