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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >CCL21 mediates CD4+ T-cell costimulation via a DOCK2/Rac-dependent pathway.
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CCL21 mediates CD4+ T-cell costimulation via a DOCK2/Rac-dependent pathway.

机译:CCL21通过DOCK2 / Rac依赖性途径介导CD4 + T细胞共刺激。

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CD4(+) T cells use the chemokine receptor CCR7 to home to and migrate within lymphoid tissue, where T-cell activation takes place. Using primary T-cell receptor (TCR)-transgenic (tg) CD4(+) T cells, we explored the effect of CCR7 ligands, in particular CCL21, on T-cell activation. We found that the presence of CCL21 during early time points strongly increased in vitro T-cell proliferation after TCR stimulation, correlating with increased expression of early activation markers. CCL21 costimulation resulted in increased Ras- and Rac-GTP formation and enhanced phosphorylation of Akt, MEK, and ERK but not p38 or JNK. Kinase-dead PI3Kdelta(D910A/D910A) or PI3Kgamma-deficient TCR-tg CD4(+) T cells showed similar responsiveness to CCL21 costimulation as control CD4(+) T cells. Conversely, deficiency in the Rac guanine exchange factor DOCK2 significantly impaired CCL21-mediated costimulation in TCR-tg CD4(+) T cells, concomitant with impaired Rac- but not Ras-GTP formation. Using lymph node slices for live monitoring of T-cell behavior and activation, we found that G protein-coupled receptor signaling was required for early CD69 expression but not for Ca(2+) signaling. Our data suggest that the presence of CCL21 during early TCR signaling lowers the activation threshold through Ras- and Rac-dependent pathways leading to increased ERK phosphorylation.
机译:CD4(+)T细胞利用趋化因子受体CCR7归巢并在淋巴组织内迁移,在那里发生T细胞活化。使用主要的T细胞受体(TCR)转基因(tg)CD4(+)T细胞,我们探索了CCR7配体,特别是CCL21,对T细胞活化的影响。我们发现在早期时间点CCL21的存在大大增强了TCR刺激后体外T细胞的增殖,与早期激活标志物的表达增加相关。 CCL21共刺激导致增加的Ras-和Rac-GTP形成,并增强Akt,MEK和ERK的磷酸化,但不增强p38或JNK。激酶死亡的PI3Kdelta(D910A / D910A)或PI3Kγ缺失的TCR-tg CD4(+)T细胞显示出与对照CD4(+)T细胞相似的对CCL21共刺激的反应性。相反,Rac鸟嘌呤交换因子DOCK2的缺乏显着损害了TCR-tg CD4(+)T细胞中CCL21介导的共刺激,但伴随着受损的Rac-而不是Ras-GTP的形成。使用淋巴结切片实时监测T细胞的行为和激活,我们发现早期CD69表达所需的G蛋白偶联受体信号传导,而不是Ca(2+)信号传导。我们的数据表明,在早期TCR信号传导期间CCL21的存在通过Ras和Rac依赖性途径降低了激活阈值,从而导致ERK磷酸化增加。

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