» Articles » PMID: 35563579

Long Non-Coding RNA Regulates Ovine Granulosa Cells Apoptosis by Affecting the Expression of Apoptosis-Related Genes

Overview
Journal Int J Mol Sci
Publisher MDPI
Date 2022 May 14
PMID 35563579
Authors
Affiliations
Soon will be listed here.
Abstract

Short-term dietary supplementation of ewes during the luteal phase can increase fertility, most probably by stimulating glucose uptake by the follicles. However, the molecular mechanism of glucose regulation of follicular development has not yet been clarified, especially the further study of long non-coding RNA (lncRNA) in determining fertility during follicular development. We generated granulosa cell (GC) models of different doses of glucose (0, 2.1, 4.2, 8.4, 16.8 and 33.6 mM), and observed that the highest cell viability was recorded in the 8.4 mM group and the highest apoptosis rates were recorded in the 33.6 mM group. Therefore, a control group ( = 3, 0 mM glucose), a low glucose group ( = 3, add 8.4 mM glucose), and a high glucose group ( = 3, add 33.6 mM glucose) of GCs were created for next whole genomic RNA sequencing. In total, 18,172 novel lncRNAs and 510 annotated lncRNAs were identified in the GCs samples. Gene Ontology indicated that differentially expressed lncRNAs associated with cell apoptosis were highly enriched. Kyoto Encyclopedia of Genes and Genomes enrichment analysis of lncRNA target genes found that the apoptosis pathway and the p53 signaling pathway were both enriched. Furthermore, we focused on the function of a lnc and verified that lncG could influence cell apoptosis in GC development through affecting the mRNA and protein expression of apoptosis-related markers. These results provide the basis for further study of the lncRNA regulation mechanism in nutrition on female fertility.

Citing Articles

-Mediated RNA Activation Upregulates Expression and Inhibits High-Glucose-Induced Apoptosis of Sheep Granulosa Cells.

Wang Y, Tian F, Yue S, Li J, Li A, Liu Y Int J Mol Sci. 2025; 26(3).

PMID: 39940713 PMC: 11817598. DOI: 10.3390/ijms26030943.


Long non-coding RNA promotes the proliferation of ovarian granulosa cells and steroid hormone production upregulation of .

Wang J, Chen H, Zhang Y, Shen H, Zeng X Front Vet Sci. 2024; 11:1366759.

PMID: 38500606 PMC: 10944914. DOI: 10.3389/fvets.2024.1366759.


SDNOR, a Novel Antioxidative lncRNA, Is Essential for Maintaining the Normal State and Function of Porcine Follicular Granulosa Cells.

Huo Y, Li Q, Yang L, Li X, Sun C, Liu Y Antioxidants (Basel). 2023; 12(4).

PMID: 37107173 PMC: 10135012. DOI: 10.3390/antiox12040799.


Integrated analysis of lncRNA and mRNA for the apoptosis of porcine ovarian granulosa cells after polyphenol resveratrol treatment.

Zhang H, Liu Y, Han Z, Xu Q, Zhang N, Wang J Front Vet Sci. 2023; 9:1065001.

PMID: 36704707 PMC: 9872129. DOI: 10.3389/fvets.2022.1065001.


LncGSAR Controls Ovarian Granulosa Cell Steroidogenesis via Sponging MiR-125b to Activate SCAP/SREBP Pathway.

Wang Y, Guo Y, Duan C, Li J, Ji S, Yan H Int J Mol Sci. 2022; 23(20).

PMID: 36293007 PMC: 9603659. DOI: 10.3390/ijms232012132.


References
1.
Schmitz S, Grote P, Herrmann B . Mechanisms of long noncoding RNA function in development and disease. Cell Mol Life Sci. 2016; 73(13):2491-509. PMC: 4894931. DOI: 10.1007/s00018-016-2174-5. View

2.
Somchit A, Campbell B, Khalid M, Kendall N, Scaramuzzi R . The effect of short-term nutritional supplementation of ewes with lupin grain (Lupinus luteus), during the luteal phase of the estrous cycle on the number of ovarian follicles and the concentrations of hormones and glucose in plasma and follicular.... Theriogenology. 2007; 68(7):1037-46. DOI: 10.1016/j.theriogenology.2007.08.001. View

3.
Young M, Wakefield M, Smyth G, Oshlack A . Gene ontology analysis for RNA-seq: accounting for selection bias. Genome Biol. 2010; 11(2):R14. PMC: 2872874. DOI: 10.1186/gb-2010-11-2-r14. View

4.
Spicer L, Chamberlain C, Maciel S . Influence of gonadotropins on insulin- and insulin-like growth factor-I (IGF-I)-induced steroid production by bovine granulosa cells. Domest Anim Endocrinol. 2002; 22(4):237-54. DOI: 10.1016/s0739-7240(02)00125-x. View

5.
Yerushalmi G, Salmon-Divon M, Yung Y, Maman E, Kedem A, Ophir L . Characterization of the human cumulus cell transcriptome during final follicular maturation and ovulation. Mol Hum Reprod. 2014; 20(8):719-35. DOI: 10.1093/molehr/gau031. View