Truitt K E, Shi J, Gibson S, Segal L G, Mills G B, Imboden J B
Department of Medicine, Veterans Affairs Medical Center, San Francisco, CA, USA.
J Immunol. 1995 Nov 15;155(10):4702-10.
CD28, a cell-surface molecule expressed by T cells, delivers costimulatory signals during the activation of T cells by Ag. Stimulation of CD28 induces its association with phosphatidylinositol 3'-kinase (PI3-K), raising the possibility that PI3-K plays a critical role in CD28 signaling. We find, however, that wortmannin, a potent inhibitor of PI3-K, does not block CD28-mediated costimulation of Jurkat (a human T cell line) or of murine CD4+ T cells. To address further the role of PI3-K in CD28-mediated signaling, we expressed mutant murine CD28 molecules in Jurkat cells. Mutation of Tyr 170 of murine CD28 to Phe abrogates the association of murine CD28 with PI3-K but does not affect the ability of murine CD28 to augment IL-2 production by Jurkat cells in response to the combination of ionomycin and PMA. Conversely, a mutant of murine CD28 that has a Tyr at position 170 but has Phe substitutions at the remaining three cytoplasmic tyrosines retains the ability to associate with PI3-K and has an impaired ability to deliver a costimulus that augments IL-2 production. CD28, therefore, can deliver costimulatory signals independently of its interaction with PI3-K, and association with PI3-K is insufficient to mediate the full effector function of CD28. Optimal signaling by CD28 requires the integrity of one or more of the carboxyl-terminal three Tyr residues.
CD28是一种由T细胞表达的细胞表面分子,在抗原激活T细胞的过程中传递共刺激信号。CD28的刺激诱导其与磷脂酰肌醇3'-激酶(PI3-K)结合,这增加了PI3-K在CD28信号传导中起关键作用的可能性。然而,我们发现,PI3-K的强效抑制剂渥曼青霉素并不阻断CD28介导的对Jurkat细胞(一种人T细胞系)或小鼠CD4+T细胞的共刺激。为了进一步探讨PI3-K在CD28介导的信号传导中的作用,我们在Jurkat细胞中表达了突变的小鼠CD28分子。将小鼠CD28的酪氨酸170突变为苯丙氨酸可消除小鼠CD28与PI3-K的结合,但不影响小鼠CD28增强Jurkat细胞对离子霉素和佛波酯组合刺激产生白细胞介素-2的能力。相反,一种小鼠CD28突变体,其在位置170处为酪氨酸,但其余三个胞质酪氨酸被苯丙氨酸取代,保留了与PI3-K结合的能力,但传递增强白细胞介素-2产生的共刺激的能力受损。因此,CD28可以独立于其与PI3-K的相互作用传递共刺激信号,并且与PI3-K的结合不足以介导CD28的全部效应功能。CD28的最佳信号传导需要羧基末端三个酪氨酸残基中的一个或多个的完整性。