A liver-fat crosstalk for iron flux during healthy beiging of adipose tissue.

Autophagy reports Pub Date : 2024-09-04 eCollection Date: 2024-01-01 DOI:10.1080/27694127.2024.2396696
Jinying Yang, Limin Shi, Anna L Cubito, James F Collins, Zhiyong Cheng
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Abstract

Beiging of adipocytes is characteristic of a higher number of mitochondria, the central hub of metabolism in the cell. However, studies show that beiging can improve metabolic health or cause metabolic disorders. Here we discuss a liver-fat crosstalk for iron flux associated with healthy beiging of adipocytes. Deletion of the transcription factor FoxO1 in adipocytes (adO1KO mice) induces a higher iron flux from the liver to white adipose tissue, concurrent with augmented mitochondrial biogenesis that increases iron demands. In addition, adO1KO mice adopt an alternate mechanism to sustain mitophagy, which enhances mitochondrial quality control, thereby improving mitochondrial respiratory capacity and metabolic health. However, the liver-fat crosstalk is not detectable in adipose Atg7 knockout (ad7KO) mice, which undergo beiging of adipocytes but have metabolic dysregulation. Autophagic clearance of mitochondria is blocked in ad7KO mice, which accumulates dysfunctional mitochondria and elevates mitochondrial content but lowers mitochondrial respiratory capacity. Mitochondrial biogenesis is comparable in the control and ad7KO mice, and the iron influx into adipocytes and iron efflux from the liver remain unchanged. Therefore, activation of the liver-fat crosstalk is critical for mitochondrial quality control that underlies healthy beiging of adipocytes.

脂肪组织健康转化过程中铁通量的肝-脂肪串扰。
脂肪细胞的特征是线粒体数量较多,线粒体是细胞代谢的中心枢纽。然而,研究表明,北京可以改善代谢健康或引起代谢紊乱。在这里,我们讨论了与脂肪细胞健康生长相关的铁通量的肝-脂肪串扰。脂肪细胞(adO1KO小鼠)中转录因子FoxO1的缺失诱导了从肝脏到白色脂肪组织的更高铁通量,同时增加了线粒体生物发生,增加了铁需求。此外,adO1KO小鼠通过另一种机制维持线粒体自噬,增强线粒体质量控制,从而改善线粒体呼吸能力和代谢健康。然而,在脂肪Atg7敲除(ad7KO)小鼠中没有检测到肝-脂肪串扰,这些小鼠经历脂肪细胞的增加,但有代谢失调。在ad7KO小鼠中,线粒体的自噬清除被阻断,线粒体功能失调,线粒体含量升高,但线粒体呼吸能力降低。线粒体生物发生在对照组和ad7KO小鼠中是相似的,铁流入脂肪细胞和铁从肝脏流出保持不变。因此,肝脏-脂肪串扰的激活对于线粒体质量控制至关重要,而线粒体质量控制是脂肪细胞健康生长的基础。
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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