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Combinatorial Effect of T-Cell Receptor Ligation and CD45 Isoform Expression on the Signaling Contribution of the Small GTPases Ras and Rap1

机译:T细胞受体连接和CD45异构体表达对小GTPases Ras和Rap1信号传导的组合作用

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By using ligands with various affinities for the T-cell receptor (TCR) and by altering the contribution of the CD45 tyrosine phosphatase, the effects of the potency of TCR-induced signals on the function of small GTPases Ras and Rap1 were studied. T cells expressing low-molecular-weight CD45 isoforms (e.g., CD45RO) exhibited the strongest activation of the Ras-dependent Elk-1 transcription factor and the highest sensitivity to the inhibitory action of dominant negative mutant Ras compared to T cells expressing high-molecular-weight CD45 isoforms (ABC). Moreover, stimulation of CD45RO+, but not CD45ABC+, T cells with a high-affinity TCR ligand induced suboptimal Elk-1 activation compared with the stimulation induced by an intermediate-affinity TCR-ligand interaction. This observation suggested that the Ras-dependent signaling pathway is safeguarded in CD45RO+ expressors by a negative regulatory mechanism(s) which prohibits maximal activation of the Ras-dependent signaling events following high-avidity TCR-ligand engagement. Interestingly, the biochemical activity of another small GTPase, the Ras-like protein Rap1, which has been implicated in the functional suppression of Ras signaling, was inversely correlated with the extent of Elk-1 activation induced by different-affinity TCR ligands. Consistently, overexpression of putative Rap dominant negative mutant RapN17 or the physiologic inhibitor of Rap1, the Rap GTPase-activating protein RapGAP, augmented the Elk-1 response in CD45RO+ T cells. This is in contrast to the suppressive effect of RapN17 and RapGAP on CD45ABC+ T cells, underscoring the possibility that Rap1 can act as either a repressor or a potentiator of Ras effector signals, depending on CD45 isoform expression. These observations suggest that cells expressing distinct isoforms of CD45 employ different signal transduction schemes to optimize Ras-mediated signal transduction in activated T lymphocytes.
机译:通过使用对T细胞受体(TCR)具有各种亲和力的配体并通过改变CD45酪氨酸磷酸酶的作用,研究了TCR诱导的信号对小GTPases Ras和Rap1的功能的影响。与表达高分子量的T细胞相比,表达低分子量CD45亚型的T细胞(例如CD45RO)表现出最强的Ras依赖性Elk-1转录因子激活作用,并且对显性负突变Ras的抑制作用具有最高的敏感性。重的CD45同工型(ABC)。此外,与中等程度的TCR配体刺激相比,用高亲和力TCR配体刺激CD45RO + 而不刺激CD45ABC + T细胞诱导的次佳Elk-1激活。亲和力TCR-配体相互作用。该观察结果表明,CD45RO + 表达子中的Ras依赖性信号传导途径受到负调节机制的保护,该机制禁止在高强度TCR配体参与后最大程度激活Ras依赖性信号传导事件。 。有趣的是,另一种小的GTP酶,即Ras样蛋白Rap1的生化活性与Ras信号转导的功能抑制有关,与不同亲和力的TCR配体诱导的Elk-1活化程度成反比。一致地,假定的Rap显性负突变RapN17或Rap1的生理抑制剂Rap GTPase激活蛋白RapGAP的过度表达增强了CD45RO + T细胞中的Elk-1反应。这与RapN17和RapGAP对CD45ABC + T细胞的抑制作用相反,这强调了Rap1可能根据CD45同工型表达而充当Ras效应子信号的阻遏物或增强剂的可能性。这些观察结果表明表达CD45不同同工型的细胞采用不同的信号转导方案来优化活化T淋巴细胞中Ras介导的信号转导。

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