发育中的胚胎和卵巢微环境中影响原始生殖细胞命运的因素。

IF 2.4 4区 医学 Q2 DEVELOPMENTAL BIOLOGY
Sexual Development Pub Date : 2023-01-01 Epub Date: 2023-01-16 DOI:10.1159/000528209
Monica M Laronda
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引用次数: 0

摘要

背景:原始生殖细胞(PGC)的命运是由周围胚胎体细胞的名称、定位和影响所决定的。而性腺性别决定是由组织微环境中各种因素的平衡决定的。摘要:我们对哺乳动物卵巢发育的理解在很大程度上是基于用小鼠模型建立的发育时间过程。基因组工具表明,与PGC指定或性腺性别决定相关的基因已通过体内完全或有条件的敲除进行了调节,并且在具有抑制剂或改变原生性腺环境的培养物的原位模型中进行的研究已将开创性转录因子、共调节因子和染色体的相互作用拼凑在一起,这些转录因子、共调节因子和染色体对PGC向卵母细胞的进展至关重要。诸如多能干细胞衍生、基因组修饰和聚集分化培养等工具已经对人类状况产生了一些见解。对性腺和解剖学上的性别决定的进一步理解,可以从性别发育差异的人类中由新生或遗传基因变异引起的表型中推断出来。主要信息:这篇综述强调了PGC规范和迁移的关键因素,以及通过回顾精液小鼠模型的卵巢性腺规范。将这些途径与从胎儿性腺组织的表达谱、人类多能干细胞的使用或由疾病变异引起的疾病所了解的人类状况进行比较。在人体组织中破译许多这些途径是具有挑战性的。然而,新的单细胞技术和全基因组测序对揭示特发性生殖道表型的疾病变异的影响将有助于阐明人类卵巢发育的机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Factors within the Developing Embryo and Ovarian Microenvironment That Influence Primordial Germ Cell Fate.

Background: Primordial germ cell (PGC) fate is dictated by the designation, taxis, and influence of the surrounding embryonic somatic cells. Whereas gonadal sex determination results from a balance of factors within the tissue microenvironment.

Summary: Our understanding of mammalian ovary development is formed in large part from developmental time courses established using murine models. Genomic tools where genes implicated in the PGC designation or gonadal sex determination have been modulated through complete or conditional knockouts in vivo, and studies in in situ models with inhibitors or cultures that alter the native gonadal environment have pieced together the interplay of pioneering transcription factors, co-regulators and chromosomes critical for the progression of PGCs to oocytes. Tools such as pluripotent stem cell derivation, genomic modifications, and aggregate differentiation cultures have yielded some insight into the human condition. Additional understanding of sex determination, both gonadal and anatomical, may be inferred from phenotypes that arise from de novo or inherited gene variants in humans who have differences in sex development.

Key messages: This review highlights major factors critical for PGC specification and migration, and in ovarian gonad specification by reviewing seminal murine models. These pathways are compared to what is known about the human condition from expression profiles of fetal gonadal tissue, use of human pluripotent stem cells, or disorders resulting from disease variants. Many of these pathways are challenging to decipher in human tissues. However, the impact of new single-cell technologies and whole-genome sequencing to reveal disease variants of idiopathic reproductive tract phenotypes will help elucidate the mechanisms involved in human ovary development.

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来源期刊
Sexual Development
Sexual Development 生物-发育生物学
CiteScore
4.00
自引率
4.30%
发文量
25
审稿时长
>12 weeks
期刊介绍: Recent discoveries in experimental and clinical research have led to impressive advances in our knowledge of the genetic and environmental mechanisms governing sex determination and differentiation, their evolution as well as the mutations or endocrine and metabolic abnormalities that interfere with normal gonadal development. ‘Sexual Development’ provides a unique forum for this rapidly expanding field. Its broad scope covers all aspects of genetics, molecular biology, embryology, endocrinology, evolution and pathology of sex determination and differentiation in humans and animals. It publishes high-quality original research manuscripts, review articles, short reports, case reports and commentaries. An internationally renowned and multidisciplinary editorial team of three chief editors, ten prominent scientists serving as section editors, and a distinguished panel of editorial board members ensures fast and author-friendly editorial processing and peer reviewing.
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