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Ado 介导的牛磺酸耗竭会损害线粒体呼吸能力,并改变腹股沟脂肪组织的染色质景观。

Ado-Mediated Depletion of Taurine Impairs Mitochondrial Respiratory Capacity and Alters the Chromatin Landscape of Inguinal Adipose Tissue.

机构信息

Division of Nutritional Sciences, Cornell University, Ithaca, NY 14850, USA.

Department of Biomedical Sciences, Cornell University, Ithaca, NY 14850, USA.

出版信息

Nutrients. 2023 Aug 11;15(16):3532. doi: 10.3390/nu15163532.

Abstract

Non-shivering thermogenesis (NST) has strong potential to combat obesity; however, a safe molecular approach to activate this process has not yet been identified. The sulfur amino acid taurine has the ability to safely activate NST and confer protection against obesity and metabolic disease in both mice and humans, but the mechanism of this action is unknown. In this study, we discover that a suite of taurine biosynthetic enzymes, especially that of cysteamine dioxygenase (ADO), significantly increases in response to β adrenergic signaling in inguinal adipose tissue (IWAT) in order to increase intracellular concentrations of taurine. We further show that ADO is critical for thermogenic mitochondrial respiratory function as its ablation in adipocytes significantly reduces taurine levels, which leads to declines in mitochondrial oxygen consumption rates. Finally, we demonstrate via assay for transposase-accessible chromatin with sequencing (ATAC-seq) that taurine supplementation in beige adipocytes has the ability to remodel the chromatin landscape to increase the chromatin accessibility and transcription of genes, such as glucose-6-phosphate isomerase 1 (Gpi1), which are critical for NST. Taken together, our studies highlight a potential mechanism for taurine in the activation of NST that can be leveraged toward the treatment of obesity and metabolic disease.

摘要

非颤抖性产热 (NST) 具有对抗肥胖的巨大潜力;然而,尚未确定一种安全的分子方法来激活这一过程。含硫氨基酸牛磺酸具有安全激活 NST 的能力,并能预防肥胖和代谢疾病,在小鼠和人类中均有效果,但这种作用的机制尚不清楚。在这项研究中,我们发现了一系列牛磺酸生物合成酶,特别是半胱氨酸双加氧酶 (ADO),在腹股沟脂肪组织 (IWAT) 中对β肾上腺素信号的反应显著增加,以增加细胞内牛磺酸浓度。我们进一步表明,ADO 对于产热线粒体呼吸功能至关重要,因为其在脂肪细胞中的缺失会显著降低牛磺酸水平,从而导致线粒体耗氧量下降。最后,我们通过转座酶可及染色质测序 (ATAC-seq) 证明,牛磺酸补充剂能够重塑米色脂肪细胞的染色质景观,增加葡萄糖-6-磷酸异构酶 1 (Gpi1) 等基因的染色质可及性和转录,这些基因对于 NST 至关重要。总之,我们的研究强调了牛磺酸在激活 NST 中的潜在机制,可以用于治疗肥胖和代谢疾病。

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