Kawakami A, Eguchi K, Matsuoka N, Tsuboi M, Koji T, Urayama S, Nakashima T, Kawabe Y, Nagataki S
The First Department of Internal Medicine, Nagasaki University School of Medicine, Nagasaki City, Japan.
J Lab Clin Med. 1998 Nov;132(5):404-13. doi: 10.1016/s0022-2143(98)90111-1.
We investigated the expression and function of Fas and Fas ligand (FasL) on peripheral blood lymphocytes (PBLs). The cells were stimulated with various cytokines or 12-0-tetradecanoyl phorbol 13-acetate (PMA) plus ionomycin. About 30% of unstimulated PBLs expressed Fas, and the expression was augmented by interleukin-1beta (IL-1beta), IL-2, tumor necrosis factor-alpha (TNF-alpha), interferon-gamma (IFN-gamma), or PMA plus ionomycin. Although only minimal FasL expression was detected on unstimulated PBLs, FasL expression was markedly induced by IL-2 or PMA plus ionomycin, suggesting that Fas and FasL were both expressed on IL-2-stimulated or PMA-plus-ionomycin-stimulated PBLs. Although IL-2-stimulated or PMA-plus-ionomycin-stimulated PBLs were positive for both Fas and FasL, no significant increase in apoptosis was demonstrated in these activated PBLs. In addition, treatment of PBLs with IL-2 or PMA plus ionomycin did not change anti-Fas-induced apoptosis, although these activated PBLs expressed Fas strongly when compared with unstimulated PBLs. Only IL-2-stimulated or PMA-plus-ionomycin-stimulated PBLs killed Fas+ target cells efficiently via the interaction of Fas on target cells with FasL of PBLs. Bcl-2 was constitutively expressed on unstimulated PBLs, but its expression was significantly augmented by IL-2 or PMA plus ionomycin. The expression of Bax was clearly induced only on IL-2-stimulated or PMA-plus-ionomycin-stimulated PBLs and that of other Bcl-2 family proteins such as Bcl-x and Bad could not be detected on human PBLs, including IL-2-stimulated or PMA-plus-ionomycin-stimulated PBLs. Our results suggest that PBLs activated by IL-2 or PMA plus ionomycin express both Fas and FasL and that they kill Fas+ target cells by using FasL on the surface. The resistance of these activated PBLs to Fas-mediated apoptosis may be due to the augmented Bcl-2 expression or the presence of Bcl-2:Bax heterodimers on these cells.
我们研究了外周血淋巴细胞(PBLs)上Fas及Fas配体(FasL)的表达与功能。用各种细胞因子或12 - 十四酰佛波醇 - 13 - 乙酸酯(PMA)加离子霉素刺激细胞。约30%未受刺激的PBLs表达Fas,白细胞介素 - 1β(IL - 1β)、IL - 2、肿瘤坏死因子 - α(TNF - α)、干扰素 - γ(IFN - γ)或PMA加离子霉素可增强其表达。虽然在未受刺激的PBLs上仅检测到极少的FasL表达,但IL - 2或PMA加离子霉素可显著诱导FasL表达,这表明Fas和FasL在IL - 2刺激的或PMA加离子霉素刺激的PBLs上均有表达。虽然IL - 2刺激的或PMA加离子霉素刺激的PBLs上Fas和FasL均呈阳性,但这些活化的PBLs中未显示出凋亡有显著增加。此外,用IL - 2或PMA加离子霉素处理PBLs并未改变抗Fas诱导的凋亡,尽管与未受刺激的PBLs相比,这些活化的PBLs强烈表达Fas。只有IL - 2刺激的或PMA加离子霉素刺激的PBLs通过靶细胞上的Fas与PBLs的FasL相互作用有效地杀伤Fas + 靶细胞。Bcl - 2在未受刺激的PBLs上组成性表达,但其表达在IL - 2或PMA加离子霉素作用下显著增强。Bax的表达仅在IL - 2刺激的或PMA加离子霉素刺激的PBLs上明显诱导,而在人PBLs(包括IL - 2刺激的或PMA加离子霉素刺激的PBLs)上未检测到其他Bcl - 2家族蛋白如Bcl - x和Bad的表达。我们的结果表明,IL - 2或PMA加离子霉素激活的PBLs表达Fas和FasL两者,且它们通过利用表面的FasL杀伤Fas + 靶细胞。这些活化的PBLs对Fas介导的凋亡的抗性可能归因于Bcl - 2表达增强或这些细胞上存在Bcl - 2:Bax异二聚体。