Shin J, Doyle C, Yang Z, Kappes D, Strominger J L
Department of Biochemistry and Molecular Biology, Harvard University, Cambridge, MA 02138.
EMBO J. 1990 Feb;9(2):425-34. doi: 10.1002/j.1460-2075.1990.tb08127.x.
CD4, the T cell surface antigen, is phosphorylated and internalized when T cells are activated or treated with a phorbol ester, PMA. The actual phosphorylation sites have been identified and the role of phosphorylation of each on CD4 internalization investigated. Seven different mutants, in each of which one, two or all three of the serine residues of the cytoplasmic region was modified to alanine(s) (CD4.SA mutants) and one mutant in which the whole amino acid sequence from Gln421 to the C-terminal Ile433 was changed (CD4.EP mutant) were constructed and used to determine the effect of phosphorylation on CD4 internalization. Ser408 was the most efficiently phosphorylated by PMA treatment, Ser415 next and Ser431 to a minor extent. The effect of mutation on internalization was well matched with the effect on extent of phosphorylation, i.e. Ser408 was the residue most important for internalization. However, complete inhibition of CD4 internalization was achieved only by mutating all three serine residues. Interestingly, the mutant CD4.EP in which Ser408 was present and phosphorylated was not measurably internalized, suggesting that phosphorylation of Ser408 induces CD4 internalization only when other structural features of the cytoplasmic domain remain intact. In addition, the data suggest the existence of an additional minor pathway for CD4 internalization which is phosphorylation independent.
T细胞表面抗原CD4在T细胞被激活或用佛波酯PMA处理时会发生磷酸化并内化。已经确定了实际的磷酸化位点,并研究了每个位点的磷酸化对CD4内化的作用。构建了七个不同的突变体,每个突变体中细胞质区域的一个、两个或所有三个丝氨酸残基被突变为丙氨酸(CD4.SA突变体),以及一个从Gln421到C末端Ile433的整个氨基酸序列被改变的突变体(CD4.EP突变体),并用于确定磷酸化对CD4内化的影响。Ser408在用PMA处理时磷酸化效率最高,其次是Ser415,Ser431的磷酸化程度较小。突变对内化的影响与对磷酸化程度的影响非常匹配,即Ser408是内化最重要的残基。然而,只有通过突变所有三个丝氨酸残基才能完全抑制CD4内化。有趣的是,存在Ser408且被磷酸化的突变体CD4.EP没有可测量的内化,这表明只有当细胞质结构域的其他结构特征保持完整时,Ser408的磷酸化才会诱导CD4内化。此外,数据表明存在另一条CD4内化的次要途径,该途径与磷酸化无关。