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红细胞中每日血红蛋白氧化节律的机制和生理功能。

Mechanisms and physiological function of daily haemoglobin oxidation rhythms in red blood cells.

机构信息

MRC Laboratory of Molecular Biology, Cambridge, UK.

Centre for Biological Timing, Faculty of Biology, Medicine and Health, University of Manchester, Manchester, UK.

出版信息

EMBO J. 2023 Oct 4;42(19):e114164. doi: 10.15252/embj.2023114164. Epub 2023 Aug 9.

Abstract

Cellular circadian rhythms confer temporal organisation upon physiology that is fundamental to human health. Rhythms are present in red blood cells (RBCs), the most abundant cell type in the body, but their physiological function is poorly understood. Here, we present a novel biochemical assay for haemoglobin (Hb) oxidation status which relies on a redox-sensitive covalent haem-Hb linkage that forms during SDS-mediated cell lysis. Formation of this linkage is lowest when ferrous Hb is oxidised, in the form of ferric metHb. Daily haemoglobin oxidation rhythms are observed in mouse and human RBCs cultured in vitro, or taken from humans in vivo, and are unaffected by mutations that affect circadian rhythms in nucleated cells. These rhythms correlate with daily rhythms in core body temperature, with temperature lowest when metHb levels are highest. Raising metHb levels with dietary sodium nitrite can further decrease daytime core body temperature in mice via nitric oxide (NO) signalling. These results extend our molecular understanding of RBC circadian rhythms and suggest they contribute to the regulation of body temperature.

摘要

细胞的生物钟节律赋予了生理学时间组织,这对人类健康至关重要。节律存在于红细胞(RBC)中,红细胞是体内最丰富的细胞类型,但它们的生理功能知之甚少。在这里,我们提出了一种新的血红蛋白(Hb)氧化状态的生化测定方法,该方法依赖于 SDS 介导的细胞裂解过程中形成的一种对氧化还原敏感的共价血红蛋白-Hb 键。当亚铁血红蛋白(以高铁血红蛋白的形式)氧化时,这种键的形成最少。在体外培养的小鼠和人 RBC 中,或从体内采集的人 RBC 中,均可观察到每日血红蛋白氧化节律,并且不受影响核细胞生物钟节律的突变影响。这些节律与核心体温的日常节律相关,当高铁血红蛋白水平最高时,体温最低。通过饮食亚硝酸钠提高高铁血红蛋白水平可以通过一氧化氮(NO)信号进一步降低小鼠白天的核心体温。这些结果扩展了我们对 RBC 生物钟节律的分子理解,并表明它们有助于体温调节。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f59c/10548169/b68fcb46ea2d/EMBJ-42-e114164-g008.jpg

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