Reduction of Nitric Oxide Synthase 2 Expression by Distamycin A Improves Survival from Endotoxemia

一氧化氮合酶 一氧化氮 ATP合酶 化学 还原(数学) 药理学 生物化学 生物 医学 内科学 数学 几何学
作者
Rebecca M. Baron,Irvith M. Carvajal,Xiaoli Liu,Rachel Okabe,Laura E. Fredenburgh,Alvaro A. Macias,Yen‐Hsu Chen,Kuniaki Ejima,Matthew D. Layne,Mark A. Perrella
出处
期刊:Journal of Immunology [American Association of Immunologists]
卷期号:173 (6): 4147-4153 被引量:28
标识
DOI:10.4049/jimmunol.173.6.4147
摘要

NO synthase 2 (NOS2) plays an important role in endotoxemia through overproduction of NO. Distamycin A (Dist A) belongs to a class of drugs termed minor-groove DNA binders, which can inhibit transcription factor binding to AT-rich regions of DNA. We and others have previously shown that AT-rich regions of DNA surrounding transcription factor binding sites in the NOS2 promoter are critical for NOS2 induction by inflammatory stimuli in vitro. Therefore, we hypothesized that Dist A would attenuate NOS2 up-regulation in vivo during endotoxemia and improve animal survival. C57BL/6 wild-type (WT) mice treated with Dist A and LPS (endotoxin) showed significantly improved survival compared with animals treated with LPS alone. In contrast, LPS-treated C57BL/6 NOS2-deficient (NOS2-/-) mice did not benefit from the protective effect of Dist A on mortality from endotoxemia. Treatment with Dist A resulted in protection from hypotension in LPS-treated WT mice, but not in NOS2-/- mice. Furthermore, LPS-induced NOS2 expression was attenuated in vivo (WT murine tissues) and in vitro (primary peritoneal and RAW 264.7 murine macrophages) with addition of Dist A. Dist A selectively decreased IFN regulatory factor-1 DNA binding in the enhancer region of the NOS2 promoter, and this IFN regulatory factor-1 site is critical for the effect of Dist A in attenuating LPS induction of NOS2. Our data point to a novel approach in modulating NOS2 expression in vivo during endotoxemia and suggest the potential for alternative treatment approaches for critical illness.
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