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Positive and negative regulation by SLP-76/ADAP and Pyk2 of chemokine-stimulated T-lymphocyte adhesion mediated by integrin α4β1

机译:SLP-76 / ADAP和Pyk2对整合素α4β1介导的趋化因子刺激的T淋巴细胞粘附的正负调节

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摘要

Stimulation by chemokines of integrin α4β1–dependent T-lymphocyte adhesion is a crucial step for lymphocyte trafficking. The adaptor Vav1 is required for chemokine-activated T-cell adhesion mediated by α4β1. Conceivably, proteins associating with Vav1 could potentially modulate this adhesion. Correlating with activation by the chemokine CXCL12 of T-lymphocyte attachment to α4β1 ligands, a transient stimulation in the association of Vav1 with SLP-76, Pyk2, and ADAP was observed. Using T-cells depleted for SLP-76, ADAP, or Pyk2, or expressing Pyk2 kinase–inactive forms, we show that SLP-76 and ADAP stimulate chemokine-activated, α4β1-mediated adhesion, whereas Pyk2 opposes T-cell attachment. While CXCL12-promoted generation of high-affinity α4β1 is independent of SLP-76, ADAP, and Pyk2, the strength of α4β1-VCAM-1 interaction and cell spreading on VCAM-1 are targets of regulation by these three proteins. GTPase assays, expression of activated or dominant-negative Rac1, or combined ADAP and Pyk2 silencing indicated that Rac1 activation by CXCL12 is a common mediator response in SLP-76–, ADAP-, and Pyk2-regulated cell adhesion involving α4β1. Our data strongly suggest that chemokine-stimulated associations between Vav1, SLP-76, and ADAP facilitate Rac1 activation and α4β1-mediated adhesion, whereas Pyk2 opposes this adhesion by limiting Rac1 activation.
机译:趋化因子刺激整合素α4β1依赖性T淋巴细胞的粘附是淋巴细胞运输的关键步骤。衔接子Vav1是由α4β1介导的趋化因子激活T细胞粘附所必需的。可以想象,与Vav1相关的蛋白质可能会调节这种粘附。与趋化因子CXCL12激活T淋巴细胞与α4β1配体的附着相关,在Vav1与SLP-76,Pyk2和ADAP的结合中观察到短暂刺激。使用耗尽SLP-76,ADAP或Pyk2或表达Pyk2激酶失活形式的T细胞,我们显示SLP-76和ADAP刺激趋化因子激活的α4β1介导的粘附,而Pyk2反对T细胞的附着。尽管CXCL12促进的高亲和力α4β1生成独立于SLP-76,ADAP和Pyk2,但α4β1-VCAM-1相互作用和细胞在VCAM-1上扩散的强度是这三种蛋白调控的目标。 GTPase分析,活化或显性负性Rac1的表达,或ADAP和Pyk2沉默组合表明,CXCL12激活Rac1是SLP-76–,ADAP-和Pyk2调控的细胞粘附(涉及α4β1)的常见介体反应。我们的数据强烈表明,Vav1,SLP-76和ADAP之间趋化因子刺激的缔合促进Rac1激活和α4β1介导的粘附,而Pyk2通过限制Rac1激活来反对这种粘附。

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