Abraham R T, Ho S N, Barna T J, Rusovick K M, McKean D J
Department of Immunology, Mayo Clinic, Rochester, Minnesota 55905.
Mol Cell Biol. 1988 Dec;8(12):5448-58. doi: 10.1128/mcb.8.12.5448-5458.1988.
The murine T-lymphoma cell line LBRM-33 is known to require synergistic signals delivered through the antigen receptor (Ti-CD3) complex, together with interleukin 1 (IL-1), for activation of IL-2 gene expression and IL-2 production. Although 12-O-tetradecanoylphorbol-13-acetate (TPA) was capable of replacing IL-1 as an activating stimulus under certain conditions, biologic studies indicated that TPA failed to synergize with Ti-CD3-dependent stimuli under conditions in which IL-1 was clearly active. Acute exposure to TPA and other active phorbol esters resulted in a concentration-dependent inhibition of the increases in phosphoinositide hydrolysis and intracellular free Ca2+ concentration stimulated by phytohemagglutinin or anti-Ti antibodies. TPA treatment induced no direct alteration of phospholipase C enzymatic activities in LBRM-33 cells. In contrast, both Ti-CD3 cross-linkage and TPA rapidly stimulated the phosphorylation of identical CD3 complex polypeptides, presumably via activation of protein kinase C. Exposure of LBRM-33 cells to TPA resulted in a time-dependent, partial down-regulation of surface Ti-CD3 expression. Thus, TPA treatment inhibited the responsiveness of LBRM-33 cells to Ti-CD3-dependent stimuli by inducing an early desensitization of Ti-CD3 receptors, followed by a decrease in membrane receptor expression. These studies indicate that phorbol esters deliver bidirectional signals that both inhibit Ti-CD3-dependent phosphoinositide hydrolysis and augment IL-2 production in LBRM-33 cells.
已知鼠T淋巴瘤细胞系LBRM - 33需要通过抗原受体(Ti - CD3)复合物传递的协同信号,以及白细胞介素1(IL - 1),来激活IL - 2基因表达和IL - 2产生。尽管在某些条件下,12 - O - 十四烷酰佛波醇 - 13 - 乙酸酯(TPA)能够替代IL - 1作为激活刺激物,但生物学研究表明,在IL - 1明显起作用的条件下,TPA未能与Ti - CD3依赖性刺激协同作用。急性暴露于TPA和其他活性佛波酯会导致浓度依赖性抑制由植物血凝素或抗Ti抗体刺激引起的磷酸肌醇水解增加和细胞内游离Ca2 +浓度升高。TPA处理未诱导LBRM - 33细胞中磷脂酶C酶活性的直接改变。相反,Ti - CD3交联和TPA均迅速刺激相同CD3复合物多肽的磷酸化,推测是通过蛋白激酶C的激活。将LBRM - 33细胞暴露于TPA会导致表面Ti - CD3表达随时间呈部分下调。因此,TPA处理通过诱导Ti - CD3受体早期脱敏,随后降低膜受体表达,从而抑制LBRM - 33细胞对Ti - CD3依赖性刺激的反应性。这些研究表明,佛波酯传递双向信号,既能抑制Ti - CD3依赖性磷酸肌醇水解,又能增强LBRM - 33细胞中的IL - 2产生。