Sun Yuan-Chao, Wang Yong-Yong, Ge Wei, Cheng Shun-Feng, Dyce Paul W, Shen Wei
College of Animal Science and Technology, Institute of Reproductive Sciences, Qingdao Agricultural University, Qingdao 266109, China.
Department of Animal Sciences, Auburn University, Auburn, AL 36849, USA.
Oncotarget. 2017 Jun 12;8(34):57836-57844. doi: 10.18632/oncotarget.18444. eCollection 2017 Aug 22.
Gametogenesis is an essential process to ensure the transfer of genetic information from one generation to the next. It also provides a mechanism by which genetic evolution can take place. Although the genome of primordial germ cells (PGCs) is exactly the same with somatic cells within an organism, there are significant differences between their developments. For example, PGCs eventually undergo meiosis to become functional haploid gametes, and prior to that they undergo epigenetic imprinting which greatly alter their genetic regulation. Epigenetic imprinting of PGCs involves the erasure of DNA methylation and the reestablishment of them during sperm and oocyte formation. These processes are necessary and important during gametogenesis. Also, histone modification and X-chromosome inactivation have important roles during germ cell development. Recently, several studies have reported that functional sperm or oocytes can be derived from stem cells or . To produce functional germ cells, induction of germ cells from stem cells must recapitulate these processes similar to endogenous germ cells, such as epigenetic modifications. This review focuses on the epigenetic regulation during the process of germ cell development and discusses their importance during the differentiation from stem cells to germ cells.
配子发生是确保遗传信息从一代传递到下一代的重要过程。它还提供了一种遗传进化得以发生的机制。尽管原始生殖细胞(PGC)的基因组与生物体中的体细胞完全相同,但它们的发育过程存在显著差异。例如,PGC最终会经历减数分裂成为有功能的单倍体配子,在此之前它们会经历表观遗传印记,这极大地改变了它们的基因调控。PGC的表观遗传印记涉及DNA甲基化的擦除以及在精子和卵子形成过程中的重新建立。这些过程在配子发生过程中是必要且重要的。此外,组蛋白修饰和X染色体失活在生殖细胞发育过程中也起着重要作用。最近,几项研究报告称功能性精子或卵子可以从干细胞中获得。为了产生功能性生殖细胞,从干细胞诱导生殖细胞必须重现这些类似于内源性生殖细胞的过程,如表观遗传修饰。本综述重点关注生殖细胞发育过程中的表观遗传调控,并讨论它们在从干细胞向生殖细胞分化过程中的重要性。