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端粒诱导衰老情况下完整的线粒体功能。

Intact mitochondrial function in the setting of telomere-induced senescence.

机构信息

Dorothy P. and Richard P. Simmons Center for Interstitial Lung Disease, Division of Pulmonary, Allergy, and Critical Care Medicine, University of Pittsburgh, Pittsburgh, Pennsylvania, USA.

Division of Endocrinology and Metabolism, University of Pittsburgh, Pittsburgh, Pennsylvania, USA.

出版信息

Aging Cell. 2023 Oct;22(10):e13941. doi: 10.1111/acel.13941. Epub 2023 Sep 8.

Abstract

Mitochondria play essential roles in metabolic support and signaling within all cells. Congenital and acquired defects in mitochondria are responsible for several pathologies, including premature entrance to cellar senescence. Conversely, we examined the consequences of dysfunctional telomere-driven cellular senescence on mitochondrial biogenesis and function. We drove senescence in vitro and in vivo by deleting the telomere-binding protein TRF2 in fibroblasts and hepatocytes, respectively. Deletion of TRF2 led to a robust DNA damage response, global changes in transcription, and induction of cellular senescence. In vitro, senescent cells had significant increases in mitochondrial respiratory capacity driven by increased cellular and mitochondrial volume. Hepatocytes with dysfunctional telomeres maintained their mitochondrial respiratory capacity in vivo, whether measured in intact cells or purified mitochondria. Induction of senescence led to the upregulation of overlapping and distinct genes in fibroblasts and hepatocytes, but transcripts related to mitochondria were preserved. Our results support that mitochondrial function and activity are preserved in telomere dysfunction-induced senescence, which may facilitate continued cellular functions.

摘要

线粒体在所有细胞的代谢支持和信号转导中发挥着重要作用。线粒体的先天和获得性缺陷是导致多种疾病的原因,包括细胞衰老的过早进入。相反,我们研究了功能失调的端粒驱动的细胞衰老对线粒体生物发生和功能的影响。我们通过分别在成纤维细胞和肝细胞中删除端粒结合蛋白 TRF2 来体外和体内诱导衰老。TRF2 的缺失导致了强烈的 DNA 损伤反应、转录的全局变化和细胞衰老的诱导。在体外,衰老细胞的线粒体呼吸能力显著增加,这是由细胞和线粒体体积的增加驱动的。体内,无论在完整细胞还是纯化的线粒体中测量,功能失调的端粒的肝细胞都能保持其线粒体呼吸能力。衰老的诱导导致成纤维细胞和肝细胞中重叠和不同的基因上调,但与线粒体相关的转录本被保留。我们的结果支持端粒功能障碍诱导的衰老中保留了线粒体功能和活性,这可能有助于继续维持细胞功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f1e9/10577573/14af0d62ec10/ACEL-22-e13941-g005.jpg

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