首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >NFAT5/TonEBP mutant mice define osmotic stress as a critical feature of the lymphoid microenvironment.
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NFAT5/TonEBP mutant mice define osmotic stress as a critical feature of the lymphoid microenvironment.

机译:NFAT5 / TonEBP突变小鼠将渗透压定义为淋巴微环境的关键特征。

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Osmotic stress responses are critical not only to the survival of unicellular organisms but also to the normal function of the mammalian kidney. However, the extent to which cells outside the kidney rely on osmotic stress responses in vivo remains unknown. Nuclear factor of activated T cells 5 (NFAT5)/tonicity enhancer binding protein (TonEBP), the only known osmosensitive mammalian transcription factor, is expressed most abundantly in the thymus and is induced upon lymphocyte activation. Here we report that NFAT5/TonEBP is not only essential for normal cell proliferation under hyperosmotic conditions but also necessary for optimal adaptive immunity. Targeted deletion of exons 6 and 7 of the Nfat5 gene, which encode a critical region of the DNA-binding domain, gave rise to a complete loss of function in the homozygous state and a partial loss of function in the heterozygous state. Complete loss of function resulted in late gestational lethality. Furthermore, hypertonicity-induced NFAT5/TonEBP transcriptional activity and hsp70.1 promoter function were completely eliminated, and cell proliferation under hyperosmotic culture conditions was markedly impaired. Partial loss of NFAT5/TonEBP function resulted in lymphoid hypocellularity and impaired antigen-specific antibody responses in viable heterozygous animals. In addition, lymphocyte proliferation ex vivo was reduced under hypertonic, but not isotonic, culture conditions. Direct measurement of tissue osmolality further revealed lymphoid tissues to be hyperosmolar. These results indicate that lymphocyte-mediated immunity is contingent on adaptation to physiologic osmotic stress, thus providing insight into the lymphoid microenvironment and the importance of the NFAT5/TonEBP osmotic stress response pathway in vivo.
机译:渗透应激反应不仅对单细胞生物的生存至关重要,而且对哺乳动物肾脏的正常功能也至关重要。然而,肾外细胞在体内依赖于渗透压反应的程度仍然未知。活化的T细胞5(NFAT5)/张力增强剂结合蛋白(TonEBP)的核因子是唯一已知的渗透敏感性哺乳动物转录因子,在胸腺中表达最丰富,并在淋巴细胞活化后被诱导。在这里我们报告NFAT5 / TonEBP不仅是高渗条件下正常细胞增殖所必需的,而且对于最佳适应性免疫也是必需的。 Nfat5基因的外显子6和7的有针对性的删除,它编码DNA结合域的关键区域,导致纯合状态下功能的完全丧失和杂合状态下功能的部分丧失。功能完全丧失导致晚期妊娠致死率。此外,高渗诱导的NFAT5 / TonEBP转录活性和hsp70.1启动子功能被完全消除,高渗培养条件下的细胞增殖明显受损。 NFAT5 / TonEBP功能的部分丧失导致活的杂合动物体内淋巴样细胞减少和抗原特异性抗体反应受损。另外,在高渗但等渗的培养条件下,离体淋巴细胞增殖减少。直接测量组织渗透压进一步显示淋巴组织是高渗的。这些结果表明,淋巴细胞介导的免疫取决于对生理渗透压的适应性,从而提供了对淋巴微环境的洞察力以及体内NFAT5 / TonEBP渗透压反应途径的重要性。

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