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Specification of germ cell fate in mice

机译:小鼠生殖细胞命运规范

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An early fundamental event during development is the segregation of germ cells from somatic cells. In many organisms, this is accomplished by the inheritance of preformed germ plasm, which apparently imposes transcriptional repression to prevent somatic cell fate. However, in mammals, pluripotent epiblast cells acquire germ cell fate in response to signalling molecules. We have used single cell analysis to study how epiblast cells acquire germ cell competence and undergo specification. Germ cell competent cells express Fragilis and initially progress towards a somatic mesodermal fate. However, a subset of these cells, the future primordial germ cells (PGCs), then shows rapid upregulation of Fragilis with concomitant transcriptional repression of a number of genes, including Hox and Smad genes. This repression may be a key event associated with germ cell specification. Furthermore, PGCs express Stella and other genes, such as Oct-4 that are associated with pluripotency. While these molecules are also detected in mature oocytes as maternally inherited factors, their early role is to regulate development and maintain pluripotency, and they do not serve the role of classical germline determinants. [References: 51]
机译:发育过程中的早期基本事件是生殖细胞与体细胞的分离。在许多生物中,这是通过预先形成的种质的遗传来完成的,这种遗传显然施加了转录抑制,以防止体细胞的命运。然而,在哺乳动物中,多能表皮细胞响应信号分子而获得生殖细胞命运。我们已经使用单细胞分析来研究成骨细胞如何获得生殖细胞能力并进行鉴定。生殖细胞感受态细胞表达脆弱类,最初朝着中胚层的命运发展。然而,这些细胞的一个子集,即未来的原始生殖细胞(PGCs),随后显示出脆弱的快速上调,同时伴随着许多基因的转录抑制,包括Hox和Smad基因。这种抑制可能是与生殖细胞规格相关的关键事件。此外,PGC表达Stella和其他基因,例如与多能性相关的Oct-4。尽管在成熟的卵母细胞中也检测到这些分子作为母体遗传因素,但它们的早期作用是调节发育并维持多能性,并且它们不充当经典种系决定子的作用。 [参考:51]

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