Transcriptional control of human gametogenesis

Author:

Fang Fang1,Iaquinta Phillip J2,Xia Ninuo1,Liu Lei1,Diao Lei1,Reijo Pera Renee A23ORCID

Affiliation:

1. The First Affiliated Hospital of USTC, Division of Life Sciences and Medicine, University of Science and Technology of China, Hefei, Anhui, China

2. Division of Research, Economic Development, and Graduate Education, California Polytechnic State University, San Luis Obispo, CA, USA

3. McLaughlin Research Institute, Great Falls, MT, USA

Abstract

ABSTRACT The pathways of gametogenesis encompass elaborate cellular specialization accompanied by precise partitioning of the genome content in order to produce fully matured spermatozoa and oocytes. Transcription factors are an important class of molecules that function in gametogenesis to regulate intrinsic gene expression programs, play essential roles in specifying (or determining) germ cell fate and assist in guiding full maturation of germ cells and maintenance of their populations. Moreover, in order to reinforce or redirect cell fate in vitro, it is transcription factors that are most frequently induced, over-expressed or activated. Many reviews have focused on the molecular development and genetics of gametogenesis, in vivo and in vitro, in model organisms and in humans, including several recent comprehensive reviews: here, we focus specifically on the role of transcription factors. Recent advances in stem cell biology and multi-omic studies have enabled deeper investigation into the unique transcriptional mechanisms of human reproductive development. Moreover, as methods continually improve, in vitro differentiation of germ cells can provide the platform for robust gain- and loss-of-function genetic analyses. These analyses are delineating unique and shared human germ cell transcriptional network components that, together with somatic lineage specifiers and pluripotency transcription factors, function in transitions from pluripotent stem cells to gametes. This grand theme review offers additional insight into human infertility and reproductive disorders that are linked predominantly to defects in the transcription factor networks and thus may potentially contribute to the development of novel treatments for infertility.

Funder

The National Institute of Health

National Natural Science Foundation of China

Fundamental Research Funds

University of Science and Technology of China

Publisher

Oxford University Press (OUP)

Subject

Obstetrics and Gynecology,Reproductive Medicine

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