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一氧化氮合酶、饮食中的亚硝酸盐/硝酸盐和其他来源对 NO 信号产物形成的贡献。

Contributions of nitric oxide synthases, dietary nitrite/nitrate, and other sources to the formation of NO signaling products.

机构信息

Whitaker Cardiovascular Institute, Boston University School of Medicine, Boston, Massachusetts, USA.

出版信息

Antioxid Redox Signal. 2012 Aug 1;17(3):422-32. doi: 10.1089/ars.2011.4156. Epub 2012 Jan 18.

Abstract

UNLABELLED

Mice lacking all three nitric oxide synthase (NOS) genes remain viable even though deletion of the major downstream target of NO, soluble guanylyl cyclase, is associated with a dramatically shortened life expectancy. Moreover, findings of relatively normal flow responses in eNOS knockouts are generally attributed to compensatory mechanisms including upregulation of remaining NOS isoforms, but the alternative possibility that dietary nitrite/nitrate (NOx) may contribute to basal levels of NO signaling has never been investigated.

AIM

The aim of the present study was to examine how NO signaling products (nitrosated and nitrosylated proteins) and NO metabolites (nitrite, nitrate) are affected by single NOS deletions and whether dietary NOx plays a compensatory role in any deficiency. Specifically, we sought to ascertain whether profound alterations of these products arise upon genetic deletion of either NOS isoform, inhibition of all NOS activity, NOx restriction, or all of the above.

RESULTS

Our results indicate that while some significant changes do indeed occur, they are surprisingly moderate and compartmentalized to specific tissues. Unexpectedly, even after pharmacological inhibition of all NOSs and restriction of dietary NOx intake in eNOS knockout mice significant levels of NO-related products remain. Innovation/Conclusion: These findings suggest that a yet unidentified source of NO, unrelated to NOSs or dietary NOx, may be sustaining basal NO signaling in tissues. Given the significance of NO for redox regulation in health and disease, it would seem to be important to identify the nature of this additional source of NO products as it may offer new therapeutic avenues for correcting NO deficiencies.

摘要

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尽管一氧化氮合酶 (NOS) 的主要下游靶点可溶性鸟苷酸环化酶的缺失与预期寿命的显著缩短有关,但缺乏所有三种 NOS 基因的小鼠仍然具有活力。此外,eNOS 敲除小鼠的相对正常血流反应的发现通常归因于补偿机制,包括剩余 NOS 同工型的上调,但饮食中亚硝酸盐/硝酸盐 (NOx) 可能有助于基础水平的 NO 信号传递的替代可能性从未被研究过。

目的

本研究的目的是检查 NO 信号产物(硝化和亚硝化蛋白)和 NO 代谢物(亚硝酸盐、硝酸盐)如何受到单一 NOS 缺失的影响,以及饮食 NOx 是否在任何缺乏中起补偿作用。具体来说,我们试图确定在 NOS 同工型的任何一种缺失、所有 NOS 活性的抑制、NOx 限制或上述所有因素的遗传缺失时,这些产物是否会发生深刻的改变。

结果

我们的结果表明,虽然确实发生了一些重大变化,但它们令人惊讶地适中且局限于特定组织。出乎意料的是,即使在 eNOS 敲除小鼠中抑制所有 NOS 并限制饮食中的 NOx 摄入后,仍存在相当水平的与 NO 相关的产物。创新/结论:这些发现表明,一种尚未确定的与 NOS 或饮食 NOx 无关的 NO 来源可能在组织中维持基础 NO 信号传递。鉴于 NO 在健康和疾病中的氧化还原调节中的重要性,似乎有必要确定这种额外的 NO 产物来源的性质,因为它可能为纠正 NO 缺乏提供新的治疗途径。

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