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棕色脂肪组织中的肌红蛋白:产热作用中的多面手。

Myoglobin in Brown Adipose Tissue: A Multifaceted Player in Thermogenesis.

机构信息

Institute of Veterinary Physiology, University of Zurich, 8057 Zurich, Switzerland.

Zurich Center for Integrative Human Physiology (ZIHP), University of Zurich, 8057 Zurich, Switzerland.

出版信息

Cells. 2023 Sep 8;12(18):2240. doi: 10.3390/cells12182240.

Abstract

Brown adipose tissue (BAT) plays an important role in energy homeostasis by generating heat from chemical energy via uncoupled oxidative phosphorylation. Besides its high mitochondrial content and its exclusive expression of the uncoupling protein 1, another key feature of BAT is the high expression of myoglobin (MB), a heme-containing protein that typically binds oxygen, thereby facilitating the diffusion of the gas from cell membranes to mitochondria of muscle cells. In addition, MB also modulates nitric oxide (NO•) pools and can bind C16 and C18 fatty acids, which indicates a role in lipid metabolism. Recent studies in humans and mice implicated MB present in BAT in the regulation of lipid droplet morphology and fatty acid shuttling and composition, as well as mitochondrial oxidative metabolism. These functions suggest that MB plays an essential role in BAT energy metabolism and thermogenesis. In this review, we will discuss in detail the possible physiological roles played by MB in BAT thermogenesis along with the potential underlying molecular mechanisms and focus on the question of how BAT-MB expression is regulated and, in turn, how this globin regulates mitochondrial, lipid, and NO• metabolism. Finally, we present potential MB-mediated approaches to augment energy metabolism, which ultimately could help tackle different metabolic disorders.

摘要

棕色脂肪组织(BAT)通过解耦氧化磷酸化将化学能转化为热能,在能量平衡中发挥着重要作用。除了高线粒体含量和独特表达解耦蛋白 1 外,BAT 的另一个关键特征是肌红蛋白(MB)的高表达,MB 是一种含有血红素的蛋白质,通常结合氧气,从而促进气体从细胞膜扩散到肌细胞的线粒体。此外,MB 还调节一氧化氮(NO•)池,并可以结合 C16 和 C18 脂肪酸,这表明其在脂质代谢中发挥作用。最近在人类和小鼠中的研究表明,BAT 中的 MB 参与调节脂肪滴形态和脂肪酸穿梭及组成以及线粒体氧化代谢。这些功能表明,MB 在 BAT 的能量代谢和产热中发挥着重要作用。在这篇综述中,我们将详细讨论 MB 在 BAT 产热中可能发挥的生理作用以及潜在的分子机制,并重点探讨 BAT-MB 表达如何受到调节,以及这种球蛋白如何反过来调节线粒体、脂质和 NO•代谢。最后,我们提出了潜在的 MB 介导的方法来增强能量代谢,这最终可能有助于解决不同的代谢紊乱。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/941f/10526770/2b3da39ae693/cells-12-02240-g001.jpg

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