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Liensinine Inhibits Beige Adipocytes Recovering to white Adipocytes through Blocking Mitophagy Flux In Vitro and In Vivo

机译:莲心碱通过体外和体内阻断线粒体通量抑制米色脂肪细胞恢复为白色脂肪细胞。

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摘要

Promoting white-to-beige adipocyte transition is a promising approach for obesity treatment. Although Liensinine (Lie), a kind of isoquinoline alkaloid, has been reported to affect white-to-beige adipocyte transition, its effects on inhibiting beige adipocytes recovering to white adipocytes and maintaining the characteristics of beige adipocyte remain unclear. Therefore, we explored the effects and underlying mechanism of Lie on beige adipocyte maintenance in vitro and in vivo. Here, we first demonstrated that after white adipocytes turned to beige adipocytes by rosiglitazone (Rosi) stimuli, beige adipocytes gradually lost their characteristics and returned to white adipocytes again once Rosi was withdrawn. We found that Lie retained high levels of uncoupling protein 1 (UCP1) and mitochondrial oxidative phosphorylation complex I, II, III, IV and V (COX I–V), oxygen consumption rate (OCR) after Rosi withdrawal. In addition, after Rosi withdrawal, the beige-to-white adipocyte transition was coupled to mitophagy, while Lie inhibited mitophagy flux by promoting the accumulation of pro-cathepsin B (pro-CTSB), pro-cathepsin D (pro-CTSD) and pro-cathepsin L (pro-CTSL), ultimately maintaining the beige adipocytes characteristics in vitro. Moreover, through blocking mitophagy flux, Lie significantly retained the molecular characteristics of beige adipocyte, reduced body weight gain rate and enhanced energy expenditure after stimuli withdrawal in vivo. Together, our data showed that Lie inhibited lysosomal cathepsin activity by promoting the accumulation of pro-CTSB, pro-CTSD and pro-CTSL, which subsequently inhibited mitophagy flux, and ultimately inhibited the beige adipocytes recovering to white adipocytes and maintained the characteristics of beige adipocyte after stimuli withdrawal. In conclusion, by blocking lysosome-mediated mitophagy, Lie inhibits beige adipocytes recovering to white adipocytes and may be a potential candidate for preventing high fat diet induced obesity.
机译:促进白米色脂肪细胞过渡是肥胖治疗的一种有前途的方法。尽管Liensinine(Lie)是一种异喹啉碱,可影响白米色至脂肪细胞的转变,但其抑制米色脂肪细胞恢复为白色脂肪细胞并维持米色脂肪细胞特性的作用仍不清楚。因此,我们探讨了Lie在体内和体外对米色脂肪细胞维持的作用及其潜在机制。在这里,我们首先证明了在罗格列酮(Rosiglitazone(Rosi))刺激下白色脂肪细胞变成米色脂肪细胞后,一旦Rosi撤出,米色脂肪细胞逐渐失去其特征,并再次返回白色脂肪细胞。我们发现Lie保留了高水平的解偶联蛋白1(UCP1)和线粒体氧化磷酸化复合物I,II,III,IV和V(COX IV),Rosi撤离后的耗氧率(OCR)。此外,在Rosi撤药后,米色至白色的脂肪细胞过渡与线粒体偶联,而Lie通过促进前蛋白酶B(pro-CTSB),前蛋白酶D(pro-CTSD)和前蛋白酶的积累来抑制线粒体通量。前蛋白酶L(pro-CTSL),最终在体外维持米色脂肪细胞的特性。此外,通过阻断线粒体通量,Lie显着保留了米色脂肪细胞的分子特征,降低了体重增加率并在体内撤回刺激后增加了能量消耗。总之,我们的数据表明,Lie通过促进pro-CTSB,pro-CTSD和pro-CTSL的积累来抑制溶酶体组织蛋白酶的活性,从而抑制了线粒体通量,并最终抑制了米色脂肪细胞恢复为白色脂肪细胞并保持了米色的特性。停止刺激后脂肪细胞。总之,通过阻断溶酶体介导的线粒体吞噬,Lie可抑制米色脂肪细胞恢复为白色脂肪细胞,并且可能是预防高脂饮食诱导的肥胖的潜在候选者。

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