首页> 美国卫生研究院文献>Immunology >Intracellular concentrations of Ca2+ modulate the strength of signal and alter the outcomes of cytotoxic T-lymphocyte antigen-4 (CD152)–CD80/CD86 interactions in CD4+ T lymphocytes
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Intracellular concentrations of Ca2+ modulate the strength of signal and alter the outcomes of cytotoxic T-lymphocyte antigen-4 (CD152)–CD80/CD86 interactions in CD4+ T lymphocytes

机译:细胞内Ca2 +浓度调节信号强度并改变CD4 + T淋巴细胞中细胞毒性T淋巴细胞抗原4(CD152)–CD80 / CD86相互作用的结果

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摘要

The costimulatory receptors CD28 and cytotoxic T-lymphocyte antigen (CTLA)-4 and their ligands, CD80 and CD86, are expressed on T lymphocytes; however, their functional roles during T cell–T cell interactions are not well known. The consequences of blocking CTLA-4–CD80/CD86 interactions on purified mouse CD4+ T cells were studied in the context of the strength of signal (SOS). CD4+ T cells were activated with phorbol 12-myristate 13-acetate (PMA) and different concentrations of a Ca2+ ionophore, Ionomycin (I), or a sarcoplasmic Ca2+ ATPase inhibitor, Thapsigargin (TG). Increasing concentrations of I or TG increased the amount of interleukin (IL)-2, reflecting the conversion of a low to a high SOS. During activation with PMA and low amounts of I, intracellular concentrations of calcium ([Ca2+]i) were greatly reduced upon CTLA-4–CD80/CD86 blockade. Further experiments demonstrated that CTLA-4–CD80/CD86 interactions reduced cell cycling upon activation with PMA and high amounts of I or TG (high SOS) but the opposite occurred with PMA and low amounts of I or TG (low SOS). These results were confirmed by surface T-cell receptor (TCR)–CD3 signalling using a low SOS, for example soluble anti-CD3, or a high SOS, for example plate-bound anti-CD3. Also, CTLA-4–CD80/CD86 interactions enhanced the generation of reactive oxygen species (ROS). Studies with catalase revealed that H2O2 was required for IL-2 production and cell cycle progression during activation with a low SOS. However, the high amounts of ROS produced during activation with a high SOS reduced cell cycle progression. Taken together, these results indicate that [Ca2+]i and ROS play important roles in the modulation of T-cell responses by CTLA-4–CD80/CD86 interactions.
机译:共刺激受体CD28和细胞毒性T淋巴细胞抗原(CTLA)-4及其配体CD80和CD86在T淋巴细胞上表达。然而,它们在T细胞与T细胞相互作用中的功能作用尚不为人所知。在信号强度(SOS)的背景下研究了阻断CTLA-4–CD80 / CD86相互作用对纯化的小鼠CD4 + T细胞的影响。 CD4 + T细胞被佛波醇12-肉豆蔻酸酯13-乙酸酯(PMA)和不同浓度的Ca 2 + 离子载体,伊诺霉素(I)或肌浆Ca激活。 2 + ATPase抑制剂Thapsigargin(TG)。 I或TG浓度的增加增加了白介素(IL)-2的量,反映了低SOS向高SOS的转化。在用PMA和少量I活化的过程中,CTLA-4–CD80 / CD86阻断后,细胞内钙([Ca 2 + ] i)的浓度大大降低。进一步的实验表明,CTLA-4-CD80 / CD86相互作用在通过PMA和大量I或TG(高SOS)激活后减少了细胞周期,但在相反情况下,PMA和少量I或TG(低SOS)则相反。这些结果通过使用低SOS(例如可溶性抗CD3)或高SOS(例如板结合抗CD3)的表面T细胞受体(TCR)-CD3信号证实。另外,CTLA-4–CD80 / CD86的相互作用增强了活性氧(ROS)的生成。过氧化氢酶的研究表明,在低SOS活化过程中,IL-2产生和细胞周期进程需要H2O2。但是,活化过程中产生的大量ROS和高SOS降低了细胞周期进程。综上所述,这些结果表明[Ca 2 + ] i和ROS在通过CTLA-4–CD80 / CD86相互作用调节T细胞反应中起重要作用。

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