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首页> 外文期刊>The Journal of Reproduction and Development >Genetic influences in mouse spermatogonial stem cell self-renewal.
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Genetic influences in mouse spermatogonial stem cell self-renewal.

机译:小鼠精原干细胞自我更新的遗传影响。

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Spermatogonial stem cells (SSCs) are slowly dividing cells that undergo self-renewal division to support spermatogenesis. Although the effects of genetic background in stem cell self-renewal have been well studied in hematopoietic stem cells, little is known about its effect on stem cells in other self-renewing tissues, including SSCs. To examine whether genetic factors are involved in regulation of SSC self-renewal, we first studied spermatogenesis in different inbred mouse strains (C57BL/6, DBA/2, AKR, BALB/C and C3H) after chemical damage caused by busulfan. Spermatogenesis in the DBA/2 and AKR strains was relatively resistant to busulfan treatment, whereas spermatogenesis was diminished in C57BL/6 mice and nearly ablated in C3H and BALB/C mice. Serial germ cell transplantation experiments provided functional evidence that SSCs with the DBA/2 background expanded more rapidly than those with the B6 background. Finally, we also employed the Germline Stem (GS) cell culture technique to examine the self-renewal activity in vitro. Although genetic manipulation of GS cells has been limited to those from the DBA/2 background, we produced transgenic offspring of the C3H background by electroporation of GS cells with a plasmid vector. Our results underscore the importance of genetic factors in SSC self-renewal. Furthermore, application of genetic modification techniques to GS cells with non-DBA/2 backgrounds extends the potential of a SSC-based approach in male germline modification.
机译:精原干细胞(SSC)是缓慢分裂的细胞,它们经历自我更新分裂以支持精子发生。尽管在造血干细胞中已经充分研究了遗传背景对干细胞自我更新的影响,但对它对包括SSC在内的其他自我更新组织中的干细胞的影响知之甚少。为了检查遗传因素是否参与SSC自我更新的调控,我们首先研究了由白消安引起的化学损伤后不同自交小鼠品系(C57BL / 6,DBA / 2,AKR,BALB / C和C3H)的精子发生。 DBA / 2和AKR株的精子发生对白消安治疗相对抗性,而C57BL / 6小鼠的精子发生减少,而C3H和BALB / C小鼠的精子发生消失。连续生殖细胞移植实验提供了功能证据,表明具有DBA / 2背景的SSC的扩增比具有B6背景的SSC的扩增更快。最后,我们还采用了生殖细胞(GS)细胞培养技术来检查体外的自我更新活性。尽管GS细胞的遗传操作仅限于DBA / 2背景,但我们通过用质粒载体电穿孔GS细胞产生了C3H背景的转基因后代。我们的结果强调了遗传因素在SSC自我更新中的重要性。此外,将遗传修饰技术应用于具有非DBA / 2背景的GS细胞扩展了基于SSC的雄性种系修饰方法的潜力。

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