Ledbetter J A, Deans J P, Aruffo A, Grosmaire L S, Kanner S B, Bolen J B, Schieven G L
Bristol-Myers Squibb-PRI, Seattle.
Curr Opin Immunol. 1993 Jun;5(3):334-40. doi: 10.1016/0952-7915(93)90050-3.
CD4, CD8 and CD45 regulate the coupling of the T-cell receptor complex (CD3-TCR) to tyrosine kinase activation and phosphorylation of key substrates such as phospholipase C gamma 1. CD4 and CD8 contribute to activation signals through their cytoplasmic association with p56lck. Expression of the zeta-chain is required for functional synergy of the T-cell receptor with CD4 in the activation of phospholipase C gamma 1, which probably reflects an interaction between p56lck and zeta-associated kinase ZAP-70. CD45 expression is required for CD3-TCR signaling. CD45 may positively regulate signaling by dephosphorylating the carboxyl-terminal tyrosine of p56lck and p59fyn, and negatively regulate signaling by dephosphorylation of other TCR-associated substrates directly. One ligand for CD45 receptor has been identified as the B cell CD22 molecule. The positive and negative effects of CD45 are sensitive to the composition of CD45 in receptor complexes, and may be regulated by specific associations of CD45 isoforms with other receptors such as CD3-TCR, CD2 and CD4.
CD4、CD8和CD45调节T细胞受体复合物(CD3-TCR)与酪氨酸激酶激活以及关键底物(如磷脂酶Cγ1)磷酸化的偶联。CD4和CD8通过其胞质与p56lck的结合促进激活信号。ζ链的表达是T细胞受体与CD4在磷脂酶Cγ1激活中发挥功能协同作用所必需的,这可能反映了p56lck与ζ相关激酶ZAP-70之间的相互作用。CD45的表达是CD3-TCR信号传导所必需的。CD45可能通过使p56lck和p59fyn的羧基末端酪氨酸去磷酸化来正向调节信号传导,并通过直接使其他TCR相关底物去磷酸化来负向调节信号传导。已确定CD45受体的一种配体为B细胞CD22分子。CD45的正向和负向作用对受体复合物中CD45的组成敏感,并且可能受CD45异构体与其他受体(如CD3-TCR、CD2和CD4)的特异性结合调节。