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MicroRNA-15b regulates mitochondrial ROS production and the senescence-associated secretory phenotype through sirtuin 4/SIRT4

机译:MicroRNA-15b通过Sirtuin 4 / SIRT4调节线粒体ROS的产生和衰老相关的分泌表型。

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摘要

Mammalian sirtuins are involved in the control of metabolism and life-span regulation. Here, we link the mitochondrial sirtuin SIRT4 with cellular senescence, skin aging, and mitochondrial dysfunction. SIRT4 expression significantly increased in human dermal fibroblasts undergoing replicative or stress-induced senescence triggered by UVB or gamma-irradiation. In-vivo, SIRT4 mRNA levels were upregulated in photoaged vs. non-photoaged human skin. Interestingly, in all models of cellular senescence and in photoaged skin, upregulation of SIRT4 expression was associated with decreased levels of miR-15b. The latter was causally linked to increased SIRT4 expression because miR-15b targets a functional binding site in the SIRT4 gene and transfection of oligonucleotides mimicking miR-15b function prevented SIRT4 upregulation in senescent cells. Importantly, increased SIRT4 negatively impacted on mitochondrial functions and contributed to the development of a senescent phenotype. Accordingly, we observed that inhibition of miR-15b, in a SIRT4-dependent manner, increased generation of mitochondrial reactive oxygen species, decreased mitochondrial membrane potential, and modulated mRNA levels of nuclear encoded mitochondrial genes and components of the senescence-associated secretory phenotype (SASP). Thus, miR-15b is a negative regulator of stress-induced SIRT4 expression thereby counteracting senescence associated mitochondrial dysfunction and regulating the SASP and possibly organ aging, such as photoaging of human skin.
机译:哺乳动物的sirtuins参与代谢的控制和寿命的调节。在这里,我们将线粒体sirtuin SIRT4与细胞衰老,皮肤衰老和线粒体功能障碍联系在一起。 SIRT4表达在经历由紫外线或γ射线引发的复制性或应激诱导的衰老的人类皮肤成纤维细胞中显着增加。在体内,SIRT4 mRNA水平在光老化与未光老化的人皮肤中上调。有趣的是,在所有细胞衰老模型和光老化皮肤中,SIRT4表达的上调与miR-15b水平降低有关。后者与SIRT4表达增加有因果关系,因为miR-15b靶向SIRT4基因中的功能性结合位点,转染模仿miR-15b功能的寡核苷酸可防止SIRT4在衰老细胞中的上调。重要的是,增加的SIRT4会对线粒体功能产生负面影响,并有助于衰老表型的发展。因此,我们观察到miR-15b的抑制以SIRT4依赖性的方式发生,增加了线粒体活性氧的产生,降低了线粒体膜电位,并调节了核编码的线粒体基因和衰老相关分泌表型成分的mRNA水平( SASP)。因此,miR-15b是应激诱导的SIRT4表达的负调节剂,从而抵消了与衰老相关的线粒体功能障碍,并调节了SASP以及可能的器官衰老,例如人类皮肤的光老化。

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