Dillon Tara J, Karpitski Vladamir, Wetzel Scott A, Parker David C, Shaw Andréy S, Stork Philip J S
Vollum Institute, Oregon Health Sciences University, Portland, Oregon 97239, USA.
J Biol Chem. 2003 Sep 19;278(38):35940-9. doi: 10.1074/jbc.M301506200. Epub 2003 Jul 10.
T cells that receive stimulation through the T cell receptor (TCR) in the absence of costimulation become anergic and are refractory to subsequent costimulation. This unresponsiveness is associated with the constitutive activation of the small G protein, Rap1, and the lack of Ras-dependent activation of ERK. Recent studies suggest that Rap1 can activate the MAP kinase kinase kinase B-Raf that is either endogenously or ectopically expressed. Peripheral T cells generally do not express B-Raf; therefore, to test the hypothesis that ectopic expression of B-Raf could permit Rap1 to activate ERK signaling, we generated transgenic mice expressing B-Raf within peripheral T cells. This converted Rap1 into an activator of ERK, to enhance ERK activation and proliferation following TCR engagement in the absence of costimulation. When T cells were incubated with engineered APCs presenting antigen on I-Ek and expressing low levels of B7, they became anergic, displayed constitutive activation of Rap1, and were deficient in Ras and ERK activation. However, when incubated with the same APCs, T cells expressing the B-Raf transgene proliferated upon restimulation and displayed elevated ERK activation. Thus B-Raf expression and enhanced ERK activation is sufficient to prevent anergy in a model of APC-induced T cell anergy. However, studies using anti-TCR antibody-induced anergy showed that the ability of ERKs to reverse T cell anergy is dependent on the anergic model utilized.
在没有共刺激的情况下通过T细胞受体(TCR)接受刺激的T细胞会变成无反应性,并且对随后的共刺激具有抗性。这种无反应性与小G蛋白Rap1的组成性激活以及ERK缺乏Ras依赖性激活有关。最近的研究表明,Rap1可以激活内源性或异位表达的丝裂原活化蛋白激酶激酶激酶B-Raf。外周T细胞通常不表达B-Raf;因此,为了检验B-Raf的异位表达可以使Rap1激活ERK信号通路这一假说,我们构建了在外周T细胞中表达B-Raf的转基因小鼠。这使得Rap1转变为ERK的激活剂,从而在没有共刺激的情况下增强TCR参与后的ERK激活和增殖。当T细胞与在I-Ek上呈递抗原并表达低水平B7的工程化抗原呈递细胞(APC)一起孵育时,它们会变成无反应性,表现出Rap1的组成性激活,并且在Ras和ERK激活方面存在缺陷。然而,当与相同的APC一起孵育时,表达B-Raf转基因的T细胞在再次刺激时会增殖,并表现出增强的ERK激活。因此,在APC诱导的T细胞无反应性模型中,B-Raf的表达和增强的ERK激活足以防止无反应性。然而,使用抗TCR抗体诱导的无反应性的研究表明,ERK逆转T细胞无反应性的能力取决于所使用的无反应性模型。