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The Critical Cytoplasmic Regions of the αL/β2 Integrin in Rap1-induced Adhesion and MigrationV⃞

机译:小鼠αL/β2整合素的关键细胞质区。 Rap1诱导的粘附和 迁移V⃞

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摘要

Rap1 is a potent inside-out signal that increases LFA-1 adhesive activity. In this study, we have defined the cytoplasmic region of the αL and β2 integrin that are required for Rap1-stimulated adhesion and subsequent migration on ICAM-1. Human LFA-1 bearing truncated and point-mutated αL and β2 cytoplasmic regions were reconstituted in mouse IL-3-dependent proB cells, BAF/3. Truncation of the αL, but not β2 subunit cytoplasmic region, abolished Rap1V12-dependent adhesion to ICAM-1. The alanine substitution of two lysine residues (K1097/K1099) in the αL subunit was found to be critical in adhesion induced by Rap1V12, but not PMA. This mutation suppressed Rap1V12-induced LFA-1 conformation changes and ligand-binding affinity. The K1097/K1099 mutation also impaired binding to ICAM-1 induced by TCR cross-linking or SDF-1. In contrast, the alanine substitution for tyrosine in the β2 subunit endocytosis motif inhibited internalization of LFA-1, and severely impaired detachment at the cell rear, which resulted in long-elongated cell shapes. This result demonstrates that internalization of LFA-1 is a critical step in the deadhesion process. Our study revealed novel requirements of amino acid residues of the LFA-1 cytoplasmic region in the response to the inside-out signaling and the subsequent deadhesion process.
机译:Rap1是一种有效的由内而外的信号,可增加LFA-1的粘合活性。在这项研究中,我们定义了Rap1刺激的粘附以及随后在ICAM-1上迁移所需的αL和β2整联蛋白的胞质区域。携带截短和点突变的人LFA-1的αL和β2细胞质区域在小鼠IL-3依赖的proB细胞BAF / 3中重建。截短αL,但不截断β2亚基胞质区,消除了对ICAM-1的Rap1V12依赖性粘附。发现αL亚基中两个赖氨酸残基(K1097 / K1099)的丙氨酸取代对Rap1V12诱导的粘附至关重要,但对PMA却不起作用。此突变抑制Rap1V12诱导的LFA-1构象变化和配体结合亲和力。 K1097 / K1099突变还削弱了与TCR交联或SDF-1诱导的ICAM-1的结合。相反,β2亚基内吞作用基序中酪氨酸的丙氨酸替代抑制了LFA-1的内在化,并严重损害了细胞后部的分离,从而导致了长形的细胞形状。该结果表明,LFA-1的内在化是粘附过程中的关键步骤。我们的研究揭示了LFA-1胞质区氨基酸残基对由内而外的信号传导和随后的脱粘过程的响应的新要求。

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