Kirkham P A, Lam E W, Takamatsu H H, Parkhouse R M
Department of Immunology, Institute for Animal Health, Pirbright, Surrey, United Kingdom.
J Immunol. 1998 Aug 15;161(4):1630-6.
IL-2-stimulated expansion of T cells requires continued and sequential passage of the dividing cells through a major cell cycle check point in the G1 phase. We have previously shown that a gamma delta T cell-specific surface receptor, WC1, induces G0/G1 growth arrest, reversible with Con A, in proliferating IL-2-dependent gamma delta T cells. We now show that this reversible WC1-induced cell cycle arrest is correlated with induction of the cyclin kinase inhibitor p27kip1 and an associated down-regulation in cyclins A, D2, and D3 expression, along with dephosphorylation of pocket proteins p107, p130, and pRb. Together with diminished pocket protein phosphorylation, p107 expression levels are significantly down-regulated in response to WC1 stimulation. This coordinated sequence of signaling events is focused on E2F regulation so that, downstream of the pocket proteins, WC1 stimulation results in a diminished DNA binding activity for free E2F as a consequence of reduced E2F1 expression, whereas E2F4 expression is unaffected. Consistent with this interpretation, overexpression of E2F1 overcomes the growth-arresting effects induced by WC1 stimulation. Finally, in accordance with our previous observations at both the cellular and molecular level, subsequent mitogen stimulation can reverse all the above changes induced by WC1. These results, focused on E2F regulation, therefore provide a first insight into the effects of both positive (mitogen) and negative (anti-WC1) stimuli on cell cycle control in IL-2-dependent gamma delta T cells.
白细胞介素-2刺激T细胞的扩增需要分裂细胞持续且顺序地通过G1期的一个主要细胞周期检查点。我们之前已经表明,一种γδT细胞特异性表面受体WC1,在依赖白细胞介素-2的增殖性γδT细胞中诱导G0/G1期生长停滞,这种停滞可被刀豆蛋白A逆转。我们现在表明,这种可逆的WC1诱导的细胞周期停滞与细胞周期蛋白激酶抑制剂p27kip1的诱导以及细胞周期蛋白A、D2和D3表达的相关下调有关,同时伴有口袋蛋白p107、p130和pRb的去磷酸化。随着口袋蛋白磷酸化的减少,p107的表达水平在WC1刺激下显著下调。这种信号事件的协调序列集中在E2F调节上,因此,在口袋蛋白的下游,WC1刺激由于E2F1表达减少导致游离E2F的DNA结合活性降低,而E2F4的表达不受影响。与这种解释一致,E2F1的过表达克服了WC1刺激诱导的生长停滞效应。最后,根据我们之前在细胞和分子水平上的观察,随后的丝裂原刺激可以逆转WC1诱导的所有上述变化。因此,这些集中在E2F调节上的结果首次深入了解了正向(丝裂原)和负向(抗WC1)刺激对依赖白细胞介素-2的γδT细胞细胞周期控制的影响。