MicroRNAs emerging coordinate with placental mammals alter pathways in endometrial epithelia important for endometrial function.

MicroRNAs emerging coordinate with placental mammals alter pathways in endometrial epithelia important for endometrial function.
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DOI:
10.1016/j.isci.2023.106339
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发表时间:
2023-04-21
期刊:
影响因子:
5.8
通讯作者:
Forde, Niamh
Forde, Niamh
中科院分区:
综合性期刊2区
文献类型:
--
作者:
Hume, Laura;Edge, Jessica C.;Tinning, Haidee;Wang, Dapeng;Taylor, Alysha S.;Ovchinnikov, Vladimir;Geijer-Simpson, Annika, V;Vrljicak, Pavle;Brosens, Jan J.;Lucas, Emma S.;Simpson, Nigel A. B.;Shillito, Jayne;Forbes, Karen;O'Connell, Mary J.;Forde, Niamh

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We tested the hypothesis that conserved placental mammal-specific microRNAs and their targets facilitate endometrial receptivity to implantation. Expression of miR-340-5p, -542-3p, and -671-5p was regulated by exposure of endometrial epithelial cells to progesterone (10 μg/ml) for 24 h coordinate with 1,713 of their predicted targets. Proteomic analysis of cells transfected with miRNA mimic/inhibitor (48 h: n = 3) revealed 1,745 proteins altered by miR-340-5p (mimic; 1,369, inhibitor; 376) of which 171 were predicted targets and P4-regulated. MiR-542-3p altered 2,353 (mimic; 1,378, inhibitor; 975) 100 which were mirDB predicted, including 46 P4-regulated. MiR-671-5p altered 1,744 proteins (mimic; 1,252, inhibitor; 492) 95 of which were predicted targets and 46 P4-regulated. All miRNAs were detected in luteal phase endometrial biopsies, irrespective of pregnancy outcomes. miR-340-5p expression increased in biopsies from individuals suffering previous and subsequent miscarriage compared to those with subsequent live birth. Dysfunction of these miRNAs and their targets contribute to endometrial-derived recurrent pregnancy loss. Progesterone upregulates miR-340-5p, -542-3p and -671-5p in endometrial epithelium Progesterone alters transcripts involved in proliferation and epithelial development Over- or under-expressing these microRNAs results in altered abundance of proteins Functions of altered proteins are involved in implantation and uterine receptivity Biological sciences; Molecular biology; Developmental biology; Embryology
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