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首页> 外文期刊>The Journal of Nutritional Biochemistry >Ethanol inhibits methionine adenosyltransferase II activity and S-adenosylmethionine biosynthesis and enhances caspase-3-dependent cell death in T lymphocytes: relevance to alcohol-induced immunosuppression.
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Ethanol inhibits methionine adenosyltransferase II activity and S-adenosylmethionine biosynthesis and enhances caspase-3-dependent cell death in T lymphocytes: relevance to alcohol-induced immunosuppression.

机译:乙醇抑制蛋氨酸腺苷基转移酶II的活性和S-腺苷蛋氨酸的生物合成,并增强T淋巴细胞中caspase-3依赖的细胞死亡:与酒精诱导的免疫抑制有关。

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An important aspect in alcohol abuse-associated immune suppression is the loss of T helper CD4(+) lymphocytes, leading to impairment of multiple immune functions. Our work has shown that ethanol can sensitize CD4(+) T lymphocytes to caspase-3-dependent activation-induced cell death (AICD). It has been demonstrated that the formation of S-adenosylmethionine (SAMe) catalyzed by methionine adenosyltransferase (MAT) II is essential for CD4(+) T-cell activation and proliferation. Since ethanol is known to affect SAMe metabolism in hepatocytes, we investigated the effect of ethanol on MAT II activity/expression, SAMe biosynthesis and cell survival in CD4(+) T lymphocytes. We demonstrate for the first time that ethanol at a physiologically relevant concentration (25 mM) substantially decreased the enzymatic activity of MAT II in T lymphocytes. Ethanol was observed to decrease the transcription of MAT2A, which encodes the catalytic subunit of MAT II and is vital for MAT II activity and SAMe biosynthesis. Furthermore, correspondent to its effect on MAT II, ethanol decreased intracellular SAMe levels and enhanced caspase-3-dependent AICD. Importantly, restoration of intracellular SAMe levels by exogenous SAMe supplementation considerably decreased both caspase-3 activity and apoptotic death in T lymphocytes. In conclusion, our data show that MAT II and SAMe are critical molecular components essential for CD4(+) T-cell survival that are affected by ethanol, leading to enhanced AICD. Furthermore, these studies provide a clinical paradigm for the development of much needed therapy using SAMe supplementation in the treatment of immune dysfunction induced by alcohol abuse.
机译:与酒精滥用相关的免疫抑制的一个重要方面是T辅助CD4(+)淋巴细胞的丢失,从而导致多种免疫功能受损。我们的工作表明,乙醇可以使CD4(+)T淋巴细胞对caspase-3依赖性激活诱导的细胞死亡(AICD)敏感。已经证明,蛋氨酸腺苷基转移酶(MAT)II催化的S-腺苷甲硫氨酸(SAMe)的形成对于CD4(+)T细胞活化和增殖至关重要。由于已知乙醇会影响SAMe在肝细胞中的代谢,因此我们研究了乙醇对MAT II活性/表达,SAMe生物合成和CD4(+)T淋巴细胞中细胞存活的影响。我们首次证明生理相关浓度(25 mM)的乙醇大大降低了T淋巴细胞中MAT II的酶促活性。观察到乙醇减少了MAT2A的转录,后者编码MAT II的催化亚基,对于MAT II活性和SAMe生物合成至关重要。此外,与其对MAT II的影响相对应,乙醇降低了细胞内SAMe水平,增强了caspase-3依赖性AICD。重要的是,通过外源SAMe补充来恢复细胞内SAMe水平可显着降低T淋巴细胞中的caspase-3活性和凋亡性死亡。总之,我们的数据表明MAT II和SAMe是受乙醇影响的CD4(+)T细胞存活所必需的关键分子成分,从而导致AICD增强。此外,这些研究为开发使用SAMe补充剂治疗酒精滥用引起的免疫功能障碍急需的疗法提供了临床范例。

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