RRC ID 52577
Author Dang Y, Wang X, Hao Y, Zhang X, Zhao S, Ma J, Qin Y, Chen ZJ.
Title MicroRNA-379-5p is associate with biochemical premature ovarian insufficiency through PARP1 and XRCC6.
Journal Cell Death Dis
Abstract Premature ovarian insufficiency (POI) imposes great challenges on women's fertility and lifelong health. POI is highly heterogeneous and encompasses occult, biochemical, and overt stages. MicroRNAs (miRNAs) are negative regulators of gene expression, whose roles in physiology and diseases like cancers and neurological disorders have been recognized, but little is known about the miRNAs profile and functional relevance in biochemical POI (bPOI). In this study, the expression of miRNAs and mRNAs in granulosa cells (GCs) of bPOI women was determined by two microarrays, respectively. MiR-379-5p, PARP1, and XRCC6 were differentially expressed in GCs of bPOI as revealed by microarrays. Subsequently, functional studies demonstrated that miR-379-5p overexpression inhibited granulosa cell proliferation and attenuated DNA repair efficiency. Furthermore, both PARP1 and XRCC6 showed lower levels in GCs from patients with bPOI and were identified as executives of miR-379-5p. Therefore, our data first uncovered potentially pathogenic miR-379-5p and two novel targets PARP1 and XRCC6 in bPOI, which corroborated the significance of DNA repair for POI, and brought up an epigenetic explanation for the disease.
Volume 9(2)
Pages 106
Published 2018-1-24
DOI 10.1038/s41419-017-0163-8
PII 10.1038/s41419-017-0163-8
PMID 29367615
PMC PMC5833760
MeSH Adult Base Sequence Case-Control Studies Cell Proliferation / genetics DNA Repair / genetics Female Gene Expression Profiling Gene Expression Regulation Granulosa Cells / metabolism Granulosa Cells / pathology Humans Ku Autoantigen / genetics Ku Autoantigen / metabolism* MicroRNAs / genetics MicroRNAs / metabolism* Poly (ADP-Ribose) Polymerase-1 / genetics Poly (ADP-Ribose) Polymerase-1 / metabolism* Primary Ovarian Insufficiency / genetics* Primary Ovarian Insufficiency / pathology
IF 6.304
Times Cited 5
Resource
Human and Animal Cells KGN(RCB1154)