Ablation of FAM210A in Brown Adipocytes of Mice Exacerbates High-Fat Diet-Induced Metabolic Dysfunction.

Diabetes Pub Date : 2025-03-01 DOI:10.2337/db24-0294
Jiamin Qiu, Mennatallah A Khedr, Meijin Pan, Christina R Ferreira, Jingjuan Chen, Madigan M Snyder, Kolapo M Ajuwon, Feng Yue, Shihuan Kuang
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Abstract

Thermogenesis of brown adipose tissue (BAT) provides metabolic benefits against pathologic conditions, such as type 2 diabetes, obesity, cardiovascular disease, and cancer. The thermogenic function of BAT relies on mitochondria, but whether mitochondrial remodeling is required for the beneficial effects of BAT remains unclear. We recently identified FAM210A as a BAT-enriched mitochondrial protein essential for cold-induced thermogenesis through the modulation of OPA1-dependent cristae remodeling. Here, we report a key role of FAM210A in the systemic response to a high-fat diet (HFD). We discovered that an HFD suppressed FAM210A expression, associated with excessive OPA1 cleavage in BAT. Ucp1-Cre-driven BAT-specific Fam210a knockout (Fam210aUKO) similarly elevated OPA1 cleavage, accompanied by whitening of BAT. When subjected to an HFD, Fam210aUKO mice gained similar fat mass as sibling control mice but developed glucose intolerance, insulin resistance, and liver steatosis. The metabolic dysfunction was associated with overall increased lipid content in both the liver and BAT. Additionally, Fam210aUKO leads to inflammation in white adipose tissue. These data demonstrate that FAM210A in BAT is necessary for counteracting HFD-induced metabolic dysfunction but not obesity.

Article highlights: FAM210A regulates cold-induced mitochondrial remodeling through control of OPA1 cleavage, but whether it also plays a role in high-fat diet (HFD)-induced cristae remodeling is unknown. We asked if an HFD would alter the FAM210A level and OPA1 cleavage in brown adipose tissue (BAT) and how FAM210A loss of function would affect diet-induced obesity in mice. We found that an HFD diminished FAM210A expression and accelerated OPA1 cleavage in BAT, and Fam210a knockout exacerbated HFD-induced whitening of BAT, cold intolerance, liver steatosis, white adipose tissue inflammation, and metabolic dysfunction. Our work reveals a physiologic role of FAM210A-mediated BAT mitochondrial remodeling in systemic adaptation to an HFD and suggests that BAT mitochondria may be targeted to treat diet-induced metabolic dysfunction.

消融小鼠棕色脂肪细胞中的 FAM210A 会加剧高脂饮食引起的代谢功能障碍。
棕色脂肪组织(BAT)的生热作用可为 2 型糖尿病、肥胖症、心血管疾病和癌症等病症提供代谢益处。棕色脂肪组织的产热功能依赖于线粒体,但线粒体重塑是否是棕色脂肪组织有益作用的必要条件仍不清楚。我们最近发现 FAM210A 是一种富含 BAT 的线粒体蛋白,它通过调节 OPA1 依赖性嵴重塑对冷诱导的产热至关重要。在此,我们报告了 FAM210A 在高脂饮食(HFD)的全身反应中的关键作用。我们发现高脂饮食抑制了 FAM210A 的表达,这与 BAT 中过度的 OPA1 裂解有关。Ucp1-Cre驱动的BAT特异性Fam210a基因敲除(Fam210aUKO)同样会提高OPA1的裂解,并伴随着BAT的变白。在高密度脂蛋白膳食(HFD)条件下,Fam210aUKO小鼠获得的脂肪量与同胞对照小鼠相似,但出现了葡萄糖不耐受、胰岛素抵抗和肝脏脂肪变性。代谢功能障碍与肝脏和胆汁腺脂质含量的总体增加有关。此外,Fam210aUKO 还会导致白色脂肪组织炎症。这些数据表明,BAT中的FAM210A是抵消HFD诱导的代谢功能障碍的必要条件,但不是肥胖的必要条件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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