Redelman D, Hudig D
Cell Immunol. 1984 Oct 1;88(1):16-28. doi: 10.1016/0008-8749(84)90048-0.
K-76 COONa is a derivative of a fungal product which blocks complement (C)-mediated lysis by combining with C5 and preventing its activation to C5b. K-76 COONa can also combine with Factor I and inhibit its ability to hydrolyze C3b to iC3b. The inclusion of K-76 COONa at concentrations similar to those which inhibit C lysis blocked both murine cytotoxic-T-lymphocyte (CTL)-mediated lysis (CML) and the lectin-stimulated proliferative response of murine and human T lymphocytes. A modified cation pulse procedure has been used to determine which phases of CML were most sensitive to the drug. K-76 COONa was inhibitory when it was added to CML prior to the early Mg+2-dependent binding phase, but was much less effective when it was added at any time after the formation of CTL-target conjugates. The principal effect of the drug on the proliferative response was also exerted during an early phase of the response. K-76 COONa did not appreciably decrease the production of T-cell growth factor (TCGF), but it did inhibit the induction of TCGF receptor expression by both functional criteria, i.e., induction of responsiveness to TCGF, and by morphological criteria, i.e., the expression of the Tac antigen. Later events, such as the TCGF-dependent proliferation of cycling T cells, were less sensitive to the drug. Evidence is discussed suggesting that molecules similar to Factor I and to C3 may be involved both in the early events of CML and of T-lymphocyte activation.
K-76 羧酸钠是一种真菌产物的衍生物,它通过与 C5 结合并阻止其激活为 C5b 来阻断补体(C)介导的细胞溶解。K-76 羧酸钠还可与 I 因子结合并抑制其将 C3b 水解为 iC3b 的能力。以与抑制补体细胞溶解相似的浓度加入 K-76 羧酸钠,可阻断小鼠细胞毒性 T 淋巴细胞(CTL)介导的细胞溶解(CML)以及小鼠和人类 T 淋巴细胞的凝集素刺激增殖反应。已采用改良的阳离子脉冲程序来确定 CML 的哪些阶段对该药物最为敏感。当在早期 Mg+2 依赖性结合阶段之前将 K-76 羧酸钠加入 CML 时具有抑制作用,但在 CTL-靶细胞结合物形成后的任何时间加入时效果则要差得多。该药物对增殖反应的主要作用也在反应的早期阶段发挥。K-76 羧酸钠并未明显降低 T 细胞生长因子(TCGF)的产生,但它确实通过功能标准(即对 TCGF 反应性的诱导)和形态学标准(即 Tac 抗原的表达)抑制了 TCGF 受体表达的诱导。后期事件,如循环 T 细胞的 TCGF 依赖性增殖,对该药物的敏感性较低。文中讨论的证据表明,类似于 I 因子和 C3 的分子可能参与了 CML 和 T 淋巴细胞激活的早期事件。