The chemokine SDF1/CXCL12 and its receptor CXCR4 regulate mouse germ cell migration and survival

生物 细胞生物学 生殖细胞 生殖系发育 体细胞 细胞迁移 内胚层 生殖系 胚胎 遗传学 胚胎干细胞 细胞 基因
作者
Kathleen Molyneaux,Hélène Zinszner,Prabhat S. Kunwar,Kyle Schaible,Jürg Stebler,Mary Jean Sunshine,William A. O’Brien,Erez Raz,Dan R. Littman,Chris Wylie,Ruth Lehmann
出处
期刊:Development [The Company of Biologists]
卷期号:130 (18): 4279-4286 被引量:448
标识
DOI:10.1242/dev.00640
摘要

In mouse embryos, germ cells arise during gastrulation and migrate to the early gonad. First, they emerge from the primitive streak into the region of the endoderm that forms the hindgut. Later in development, a second phase of migration takes place in which they migrate out of the gut to the genital ridges. There, they co-assemble with somatic cells to form the gonad. In vitro studies in the mouse, and genetic studies in other organisms, suggest that at least part of this process is in response to secreted signals from other tissues. Recent genetic evidence in zebrafish has shown that the interaction between stromal cell-derived factor 1 (SDF1) and its G-protein-coupled receptor CXCR4, already known to control many types of normal and pathological cell migrations, is also required for the normal migration of primordial germ cells. We show that in the mouse, germ cell migration and survival requires the SDF1/CXCR4 interaction. First, migrating germ cells express CXCR4, whilst the body wall mesenchyme and genital ridges express the ligand SDF1. Second, the addition of exogenous SDF1 to living embryo cultures causes aberrant germ cell migration from the gut. Third, germ cells in embryos carrying targeted mutations in CXCR4 do not colonize the gonad normally. However, at earlier stages in the hindgut, germ cells are unaffected in CXCR4(-/-) embryos. Germ cell counts at different stages suggest that SDF1/CXCR4 interaction also mediates germ cell survival. These results show that the SDF1/CXCR4 interaction is specifically required for the colonization of the gonads by primordial germ cells, but not for earlier stages in germ cell migration. This demonstrates a high degree of evolutionary conservation of part of the mechanism, but also an area of evolutionary divergence.

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