Literature DB >> 31198013

MiR-17-5p modulates mitochondrial function of the genioglossus muscle satellite cells through targeting Mfn2 in hypoxia.

W Qin1, Y B H Zhang1, B L Deng2, J Liu1, H L Zhang1, Z L Jin1.   

Abstract

The root cause of obstructive sleep apnea-hypopnea syndrome (OSAHS) is repeated hypoxia during sleep. The genioglossus is one of the most important upper airway dilatation muscles and is important for maintaining normal oxygen supply during sleep. Hypoxia can directly affect the energy metabolism level of the genioglossus muscle, thereby weakening muscle function. MicroRNAs (miRNAs) can regulate mitochondrial function at the post-transcriptional level and achieve recovery or even enhancement of genioglossus function, but the specific mechanism is still unclear. In this study, an intermittent hypoxic cell model was established to detect the effects of hypoxia on the proliferation and apoptosis of Genioglossus muscle satellite cells (GG MuSCs), and the damage to the mitochondrial structure and function was assessed by transmission electron microscopy and mitochondrial membrane potential. Then, miR-17-5p was upregulated and downregulated by miRNA mimics and inhibitors, respectively, and bioinformatics analysis was used to predict and validate the target genes of miR-17-5p. The results showed that the hypoxic environment affected the proliferation of GG MuSCs and mitochondrial membrane potential, which promoted the occurrence of apoptosis and mitochondrial edema. After upregulation of miR-17-5p, cell proliferative capacity and mitochondrial function were restored. Bioinformatics prediction and gene and protein level analyses found that Mfn2 may be a target gene of miR-17-5p. . Copyright 2019 Biolife Sas www.biolifesas.org.

Entities:  

Keywords:  hypoxia; microRNA; mitochondria; muscle satellite cells

Mesh:

Substances:

Year:  2019        PMID: 31198013

Source DB:  PubMed          Journal:  J Biol Regul Homeost Agents        ISSN: 0393-974X            Impact factor:   1.711


  4 in total

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Authors:  Xuan Xu; Jia-Yu Shi; Yi-Ling Su; Qi Lu; Chu Chen
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4.  Aging Induced p53/p21 in Genioglossus Muscle Stem Cells and Enhanced Upper Airway Injury.

Authors:  Lu-Ying Zhu; Li-Ming Yu; Wei-Hua Zhang; Jia-Jia Deng; Shang-Feng Liu; Wei Huang; Meng-Han Zhang; Yan-Qin Lu; Xin-Xin Han; Yue-Hua Liu
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  4 in total

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