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首页> 外文期刊>Clinica chimica acta: International journal of clinical chemistry and applied molecular biology >Bnip3 in mitophagy: Novel insights and potential therapeutic target for diseases of secondary mitochondrial dysfunction
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Bnip3 in mitophagy: Novel insights and potential therapeutic target for diseases of secondary mitochondrial dysfunction

机译:BNIP3在MITOPHY:二次线粒体功能障碍疾病的新型见解和潜在治疗靶标

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摘要

The present review is a summary of the recent literature concerning Bnip3 expression, function, and regulation, along with its implications in mitochondrial dysfunction, disorders of mitophagy homeostasis, and development of diseases of secondary mitochondrial dysfunction. As a member of the Bcl-2 family of cell death-regulating factors, Bnip3 mediates mPTP opening, mitochondrial potential, oxidative stress, calcium overload, mitochondrial respiratory collapse, and ATP shortage of mitochondria from multiple cells. Recent studies have discovered that Bnip3 regulates mitochondrial dysfunction, mitochondrial fragmentation, mitophagy, cell apoptosis, and the development of lipid disorder diseases via numerous cellular signaling pathways. In addition, Bnip3 promotes the development of cardiac hypertrophy by mediating inflammatory response or the related signaling pathways of cardiomyocytes and is also responsible for raising abnormal mitophagy and apoptosis progression through multiple molecular signaling pathways, inducing the pathogenesis and progress of hepatocellular carcinoma (HCC). Different molecules regulate Bnip3 expression at both the transcriptional and post-transcriptional level, leading to mitochondrial dysfunction and unbalance of mitophagy in hepatocytes, which promotes the development of non-alcoholic fatty liver disease (NAFLD). Thus, Bnip3 plays an important role in mitochondrial dysfunction and mitophagy homeostasis and has emerged as a promising therapeutic target for diseases of secondary mitochondrial dysfunction.
机译:本综述是最近关于BNIP3表达,功能和调节的文献的摘要,以及其对线粒体功能障碍,MITOPAGY SoosoTasis疾病的影响以及次要线粒体功能障碍的疾病的发展。作为BCL-2家族细胞死亡调节因子的成员,BNIP3从多个细胞中介导MPTP开口,线粒体潜力,氧化应激,钙过载,线粒体呼吸呼吸崩溃和线粒体的短缺。最近的研究发现,BNIP3通过许多细胞信号通路调节线粒体功能障碍,线粒体功能障碍,线粒体碎片,乳化物,细胞凋亡和脂质疾病疾病的发展。此外,BNIP3通过介导炎症反应或心肌细胞相关信号传导途径促进心脏肥大的发展,并且还负责通过多种分子信号传导途径提高异常的乳化物和凋亡进展,诱导肝细胞癌(HCC)的发病机制和进展。不同的分子调节转录和转录后水平的BNIP3表达,导致肝细胞中的线粒体功能障碍和不平衡的影响,这促进了非酒精性脂肪肝病(NAFLD)的发育。因此,BNIP3在线粒体功能障碍和MITophagy稳态中起重要作用,并已成为次级线粒体功能障碍疾病的有希望的治疗靶标。

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