TBX3的体细胞突变通过加速VLDL分泌促进肝脏克隆扩增。

Gregory Mannino,Gabriella Quinn,Min Zhu,Zixi Wang,Xun Wang,Boyuan Li,Meng-Hsiung Hsieh,Thomas Mathews,Lauren Zacharias,Wen Gu,Purva Gopal,Natalia Brzozowska,Peter Campbell,Matt Hoare,Glen Liszczak,Hao Zhu
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引用次数: 0

摘要

增加克隆适应性或抵抗疾病的体细胞突变是积极选择的,但这些突变对机体健康的影响尚不清楚。我们之前的研究表明,Tbx3缺失增加了脂肪肝中的肝细胞适应性。在这里,我们检测了代谢功能障碍相关脂肪变性肝病(MASLD)患者的TBX3体细胞突变。在小鼠中,Tbx3缺失对MASLD有保护作用,而Tbx3过表达则加重了MASLD。Tbx3缺失通过加速VLDL分泌减少脂质过载。缺乏胆碱的饮食会阻断VLDL的分泌,从而取消了这种保护作用。TBX3转录抑制常规分泌途径和胆固醇生物合成。Hdlbp是TBX3的直接靶标,TBX3负责改变VLDL分泌。与野生型TBX3相比,患者中发现的TBX3 I155S和A280S突变未能抑制VLDL的分泌。综上所述,TBX3突变体克隆在MASLD期间通过增加脂质处理而扩增,表明克隆适应度可以以牺牲高脂血症为代价使肝脏受益。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Somatic mutations in TBX3 promote hepatic clonal expansion by accelerating VLDL secretion.
Somatic mutations that increase clone fitness or resist disease are positively selected, but the impact of these mutations on organismal health remains unclear. We previously showed that Tbx3 deletion increases hepatocyte fitness within fatty livers. Here, we detected TBX3 somatic mutations in patients with metabolic dysfunction-associated steatotic liver disease (MASLD). In mice, Tbx3 deletion protected against, whereas Tbx3 overexpression exacerbated MASLD. Tbx3 deletion reduced lipid overload by accelerating VLDL secretion. Choline deficient diets, which block VLDL secretion, abrogated this protective effect. TBX3 transcriptionally suppressed the conventional secretory pathway and cholesterol biosynthesis. Hdlbp is a direct target of TBX3 that is responsible for the altered VLDL secretion. In contrast to wild-type TBX3, the TBX3 I155S and A280S mutations found in patients failed to suppress VLDL secretion. In conclusion, TBX3 mutant clones expand during MASLD through increased lipid disposal, demonstrating that clonal fitness can benefit the liver at the cost of hyperlipidemia.
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