Sep 2026· Journal of Developmental Biology· Vol 14, pp. 38· 0 citations· 140 references
Medicine
TL;DR
It is concluded that although their potential in clinical and/or agricultural applications still remains uncertain, their role in regulating fundamental aspects of cellular biology, particularly reproductive processes, is becoming increasingly clear.
Abstract
The regulation of transcriptional activity constitutes a primary layer of control over cellular function across diverse tissues and cell types. This regulatory transcriptional landscape is largely governed by epigenetic mechanisms, including DNA and histone modifications, the dynamic activity of epigenetic “writers” and “erasers,” and the influence of small regulatory molecules such as microRNAs (miRNAs). miRNAs are small non-coding RNA molecules that play critical roles in transcriptional and post-transcriptional gene regulation. By modulating the expression of transcription factors, kinases, and other regulatory proteins, miRNAs exert tight control over cellular processes and maintain homeostasis. Given the essential requirement for precise cellular coordination in reproductive biology, miRNAs have emerged as key regulators of reproductive function. They participate in multiple stages of reproductive processes, ranging from ovarian function to the establishment and maintenance of pregnancy, thereby influencing fertility outcomes across species. In this review, we summarize recent advances in understanding the roles of miRNAs in key reproductive events, including gametogenesis, oocyte maturation, embryonic genome activation, early embryonic development, implantation and pregnancy. We aim to highlight the principal miRNAs involved in the maintenance of reproductive function and fertility, and their molecular targets and the regulatory networks when known. Based on our review, we conclude that although their potential in clinical and/or agricultural applications still remains uncertain, their role in regulating fundamental aspects of cellular biology, particularly reproductive processes, is becoming increasingly clear.
The circRNA-SIRT1 network is proposed as a context-dependent post-transcriptional regulatory network linking non-coding RNA (ncRNA) biology to immunometabolic and stress-response pathways and emphasized as a promising platform for precision diagnostics and disease-specific therapeutic interventions.
Omid Vakili, Zeynab Yousefi, Somayeh Igder et al.· Biochimica et Biophysica Act...· 0 citations
A broad range of genetic and epigenetic factors contributes to female infertility, a substantial proportion of which is related to ovulatory disorders. Any factor that disrupts the normal function of key ovarian components, including the follicle, the enclosed oocyte, and surrounding somatic cells, may contribute to fe...
Tayyebeh Zamani-Badi, Azadeh Sadat Azadbakhsh, Saeedeh Ghazaey Zidanloo et al.· Clinical and Experimental Re...· 0 citations
The biogenesis and biological functions of miRNAs are discussed and their regulatory roles in the pathogenesis of rheumatoid arthritis, inflammatory bowel disease, multiple sclerosis, multiple sclerosis, psoriasis, systemic lupus erythematosus, and atopic dermatitis are examined.
T. Tunç, Serap Yaman Ozer, Sema Mısır· Frontiers in Immunology· 0 citations
Recently, there has been a surge of interest in understanding gene regulation following the discovery that a significant portion of the human genome does not code for proteins but rather produces molecules of non-coding RNA (ncRNA) that perform complex and essential regulatory functions in various cellular processes. T...
Zahraa Qasim Mousa· Libyan Journal of Applied an...· 0 citations
Functional spermatozoa production depends on spermatogenesis, a complex developmental process that requires precise regulation of gene expression at multiple levels. Although considerable progress has been made in understanding the transcriptional and epigenetic mechanisms governing germ cell development, post-transcri...
S. Salih, A. Al-Hendy, Qi-Wei Yang· Biology· 0 citations
This review describes how spliceosome assembly, splicing regulatory elements, splicing factors, epigenetic modifications, and post-transcriptional processes determine splice-site selection and suggests that safe clinical translation will require greater selectivity, reduced off-target toxicity, and preservation of esse...
Huining Huang, Yao Yu, Qian Zhou et al.· Molecular Biomedicine· 0 citations
We use cookies to run the site and, with your consent, for analytics and to show ads.
See our Cookie Policy.