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Control of Germline Stem Cell Division Frequency – A Novel, Developmentally Regulated Role for Epidermal Growth Factor Signaling

机译:生殖细胞干细胞分裂频率的控制-表皮生长因子信号传导的新型,发育调控作用

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摘要

Exploring adult stem cell dynamics in normal and disease states is crucial to both better understanding their in vivo role and better realizing their therapeutic potential. Here we address the division frequency of Germline Stem Cells (GSCs) in testes of Drosophila melanogaster. We show that GSC division frequency is under genetic control of the highly conserved Epidermal Growth Factor (EGF) signaling pathway. When EGF signaling was attenuated, we detected a two-fold increase in the percentage of GSCs in mitotic division compared to GSCs in control animals. Ex vivo and in vivo experiments using a marker for cells in S-phase of the cell cycle showed that the GSCs in EGF mutant testes divide faster than GSCs in control testes. The increased mitotic activity of GSCs in EGF mutants was rescued by restoring EGF signaling in the GSCs, and reproduced in testes from animals with soma-depleted EGF-Receptor (EGFR). Interestingly, EGF attenuation specifically increased the GSC division frequency in adult testes, but not in larval testes. Furthermore, GSCs in testes with tumors resulting from the perturbation of other conserved signaling pathways divided at normal frequencies. We conclude that EGF signaling from the GSCs to the CySCs normally regulates GSC division frequency. The EGF signaling pathway is bifurcated and acts differently in adult compared to larval testes. In addition, regulation of GSC division frequency is a specific role for EGF signaling as it is not affected in all tumor models. These data advance our understanding concerning stem cell dynamics in normal tissues and in a tumor model.
机译:探索正常和疾病状态下的成体干细胞动力学对更好地了解其体内作用和更好地实现其治疗潜力至关重要。在这里,我们解决果蝇睾丸中生殖系干细胞(GSC)的分裂频率。我们表明,GSC划分频率是高度保守的表皮生长因子(EGF)信号传导途径的遗传控制下。当EGF信号减弱时,我们发现与对照动物中的GSC相比,有丝分裂中GSC的百分比增加了两倍。使用针对细胞周期S期细胞的标记物进行的离体和体内实验表明,EGF突变型睾丸中的GSC分裂速度快于对照睾丸中的GSC。通过恢复GSC中的EGF信号信号,挽救了EGF突变体中GSC的增加的有丝分裂活性,并在患有体细胞耗尽EGF受体(EGFR)的动物的睾丸中进行了复制。有趣的是,EGF衰减在成年睾丸中特别增加了GSC分裂频率,但在幼虫睾丸中没有。此外,睾丸中的GSCs是由以正常频率划分的其他保守信号通路的扰动引起的。我们得出结论,从GSC到CySC的EGF信号通常调节GSC的分裂频率。与幼虫睾丸相比,EGF信号通路是分叉的,并且在成人中的行为有所不同。另外,GSC分裂频率的调节对于EGF信号传导是特定的作用,因为它在所有肿瘤模型中均不受影响。这些数据促进了我们对正常组织和肿瘤模型中干细胞动力学的理解。

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