Gary-Gouy H, Lang V, Sarun S, Boumsell L, Bismuth G
Laboratoire d'Immunologie Cellulaire, Centre National de Recherche Scientifique, Centre Hospitalier Pitié-Salpêtrière, Paris, France.
J Immunol. 1997 Oct 15;159(8):3739-47.
CD5 is a 67-kDa T cell surface Ag that can be found physically associated with the CD3-TCR molecular complex. In different experimental models it has been shown to act as a costimulatory receptor for T cell activation. Unexpectedly, studies in CD5-deficient mice suggested a negative role for the CD5 Ag in CD3-TCR signaling in the thymus. In this report we assessed the constitutive interactions of CD5 in freshly isolated human thymocytes with signaling elements of the CD3-TCR complex. We determined that the ZAP-70 protein tyrosine kinase was present in CD5 immunoprecipitates. The two molecules were constitutively tyrosine phosphorylated in a complex also associating with unphosphorylated as well as phosphorylated zeta-chains. Although both p21 and p23 tyrosine-phosphorylated forms of zeta as well as phospho-CD3 epsilon molecules were constitutively present in human thymocytes and could be immunoprecipitated with ZAP-70- or CD3 epsilon-specific Abs, the p21 species of zeta was predominant in CD5 immune complexes. The interaction between CD5 and ZAP-70 was not observed in CD3-negative thymocytes, where the constitutive tyrosine phosphorylation of ZAP-70 was very low. We conclude that CD5 may affect in vivo the signaling capacity of TCRs expressed by human thymocytes by altering the phosphorylation state of CD3 and/or by retaining ZAP-70 with the p21 species of zeta.
CD5是一种67-kDa的T细胞表面抗原,可发现其与CD3-TCR分子复合物存在物理关联。在不同的实验模型中,它已被证明可作为T细胞活化的共刺激受体。出乎意料的是,对CD5缺陷小鼠的研究表明,CD5抗原在胸腺中对CD3-TCR信号传导起负性作用。在本报告中,我们评估了新鲜分离的人胸腺细胞中CD5与CD3-TCR复合物信号元件的组成性相互作用。我们确定ZAP-70蛋白酪氨酸激酶存在于CD5免疫沉淀复合物中。这两种分子在一个复合物中组成性地发生酪氨酸磷酸化,该复合物还与未磷酸化以及磷酸化的ζ链相关联。尽管ζ链的p21和p23酪氨酸磷酸化形式以及磷酸化的CD3ε分子在人胸腺细胞中组成性存在,并且可以用ZAP-70或CD3ε特异性抗体进行免疫沉淀,但ζ链的p21形式在CD5免疫复合物中占主导地位。在CD3阴性的胸腺细胞中未观察到CD5与ZAP-70之间的相互作用,在这些细胞中ZAP-70的组成性酪氨酸磷酸化非常低。我们得出结论,CD5可能通过改变CD3的磷酸化状态和/或通过将ZAP-70与ζ链的p21形式结合,在体内影响人胸腺细胞表达的TCR的信号传导能力。