| Literature DB >> 31185583 |
Jia-Hao Wang1, Yan Li2, Shou-Long Deng3, Yi-Xun Liu4, Zheng-Xing Lian5, Kun Yu6.
Abstract
Mitosis is a highly sophisticated and well-regulated process during the development and differentiation of mammalian gametogenesis. The regulation of mitosis plays an essential role in keeping the formulation in oogenesis and gametogenesis. In the past few years, substantial research progress has been made by showing that cyclins/cyclin-dependent kinase (CDK) have roles in the regulation of meiosis. In addition, more functional signaling molecules have been discovered in mitosis. Growing evidence has also indicated that miRNAs influence cell cycling. In this review, we focus on specific genes, cyclins/Cdk, signaling pathways/molecules, and miRNAs to discuss the latest achievements in understanding their roles in mitosis during gametogenesis. Further elucidation of mitosis during gametogenesis may facilitate delineating all processes of mammalian reproduction and the development of disease treatments.Entities:
Keywords: cyclins/Cdk; mammalian gametes; mitosis
Mesh:
Substances:
Year: 2019 PMID: 31185583 PMCID: PMC6628140 DOI: 10.3390/cells8060567
Source DB: PubMed Journal: Cells ISSN: 2073-4409 Impact factor: 6.600
Figure 1Characteristics of mammalian spermatogonial stem cell (SSC) development. Gray areas correspond to the cytoplasm, dark gray areas correspond to the cytomembrane, lavender and green areas correspond to the nucleus.
Figure 2(A) Illustration of the main cell cycle genes expressed and likely controlling the cell cycle in proliferating mouse PGCs. (B) The role of APC/C in the cell mitosis cycle.
Figure 3Current understanding of the signaling pathways regulating the mitosis of SSCs in mouse testes.
miRNA molecules implicated in germ cell mitosis.
| Name | Expression | Proposed Function | Targets Involved in Mammalian Gametogenesis | Reference |
|---|---|---|---|---|
| miR-17-92 cluster | PGCs, ES cells | Regulator of differentiation, proliferation and apoptosis | STAT3, E2F1, PTEN | [ |
| miRNA-31-5p | SSCs | Regulator of SSCs proliferation | JAZF1 and Cyclin A2 | [ |
| miR-290-295 | PGCs | G1 to S phase cell cycle control | WEE1, FBXL5 | [ |
| miR-202 | SSCs | Regulator of cell cycle and apoptosis of mitosis | Rbfox, Cpeb1 | [ |
| miR-224 | SSCs | Control SSCs self-renewal and cyclical gene expression | DMRT1 | [ |
| MiR-302-67 | PGCs | targeting inhibitors of the G1/S transition | Cdkn1a | [ |
| miR-125a | Later male PGCs | Control of differentiation | LIN28 | [ |
| miR-200c | Early PGCs | Control of apoptosis | ZEB1, TRKB | [ |
| miR-21 | SSCs | SSCs self-renewal, anti-apoptosis | ZEB1, TRKB | [ |
| miR-221 | PGCs | Regulate mitotic arrest in male germ cells | DND1 | [ |
| miR-34c | PGCs | Cell cycle regulator | CCND3, CCNG1, CCNB1 NOTCH2 | [ |