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本文引用的文献

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The mammalian doublesex homolog DMRT1 is a transcriptional gatekeeper that controls the mitosis versus meiosis decision in male germ cells.哺乳动物双性基因同源物 DMRT1 是一个转录主控因子,控制着精母细胞向有丝分裂还是减数分裂的命运。
Dev Cell. 2010 Oct 19;19(4):612-24. doi: 10.1016/j.devcel.2010.09.010.
2
EGR4 displays both a cell- and intracellular-specific localization pattern in the developing murine testis.EGR4 在发育中的小鼠睾丸中表现出细胞和细胞内特异性的定位模式。
Dev Dyn. 2010 Nov;239(11):3106-14. doi: 10.1002/dvdy.22442.
3
Loss of Lhx1 activity impacts on the localization of primordial germ cells in the mouse.Lhx1 活性缺失对小鼠原始生殖细胞定位的影响。
Dev Dyn. 2010 Nov;239(11):2851-9. doi: 10.1002/dvdy.22417.
4
Plzf regulates germline progenitor self-renewal by opposing mTORC1.PLZF 通过拮抗 mTORC1 调节生殖细胞祖细胞自我更新。
Cell. 2010 Aug 6;142(3):468-79. doi: 10.1016/j.cell.2010.06.041.
5
GATA switches as developmental drivers.GATA 开关作为发育驱动因素。
J Biol Chem. 2010 Oct 8;285(41):31087-93. doi: 10.1074/jbc.R110.159079. Epub 2010 Jul 29.
6
The key role of vitamin A in spermatogenesis.维生素 A 在精子发生中的关键作用。
J Clin Invest. 2010 Apr;120(4):956-62. doi: 10.1172/JCI41303. Epub 2010 Apr 1.
7
The genetics of ageing.衰老的遗传学。
Nature. 2010 Mar 25;464(7288):504-12. doi: 10.1038/nature08980.
8
Functional hierarchy and reversibility within the murine spermatogenic stem cell compartment.在小鼠精子发生干细胞隔室中功能层次结构和可逆性。
Science. 2010 Apr 2;328(5974):62-7. doi: 10.1126/science.1182868. Epub 2010 Mar 18.
9
Phenotypic plasticity of mouse spermatogonial stem cells.小鼠精原干细胞的表型可塑性。
PLoS One. 2009 Nov 19;4(11):e7909. doi: 10.1371/journal.pone.0007909.
10
FoxOs cooperatively regulate diverse pathways governing neural stem cell homeostasis.FoxOs 协同调控多种通路,调节神经干细胞的稳态。
Cell Stem Cell. 2009 Nov 6;5(5):540-53. doi: 10.1016/j.stem.2009.09.013.

Foxo1 在小鼠精原干细胞中对于其维持和精子发生的起始是必需的。

Foxo1 is required in mouse spermatogonial stem cells for their maintenance and the initiation of spermatogenesis.

机构信息

Department of Pathology, University of Texas Southwestern Medical Center, 6000 Harry Hines Boulevard, Dallas, Texas 75390-9072, USA.

出版信息

J Clin Invest. 2011 Sep;121(9):3456-66. doi: 10.1172/JCI57984. Epub 2011 Aug 25.

DOI:10.1172/JCI57984
PMID:21865646
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3163967/
Abstract

Spermatogonial stem cells (SSCs) capable of self-renewal and differentiation are the foundation for spermatogenesis. Although several factors important for these processes have been identified, the fundamental mechanisms regulating SSC self-renewal and differentiation remain unknown. Here, we investigated a role for the Foxo transcription factors in mouse spermatogenesis and found that Foxo1 specifically marks mouse gonocytes and a subset of spermatogonia with stem cell potential. Genetic analyses showed that Foxo1 was required for both SSC homeostasis and the initiation of spermatogenesis. Combined deficiency of Foxo1, Foxo3, and Foxo4 resulted in a severe impairment of SSC self-renewal and a complete block of differentiation, indicating that Foxo3 and Foxo4, although dispensable for male fertility, contribute to SSC function. By conditional inactivation of 3-phosphoinositide-dependent protein kinase 1 (Pdk1) and phosphatase and tensin homolog (Pten) in the male germ line, we found that PI3K signaling regulates Foxo1 stability and subcellular localization, revealing that the Foxos are pivotal effectors of PI3K-Akt signaling in SSCs. We also identified a network of Foxo gene targets--most notably Ret--that rationalized the maintenance of SSCs by the Foxos. These studies demonstrate that Foxo1 expression in the spermatogenic lineage is intimately associated with the stem cell state and revealed what we believe to be novel Foxo-dependent mechanisms underlying SSC self-renewal and differentiation, with implications for common diseases, including male infertility and testicular cancer, due to abnormalities in SSC function.

摘要

精原干细胞(SSC)能够自我更新和分化,是精子发生的基础。虽然已经确定了几个对这些过程很重要的因素,但调节 SSC 自我更新和分化的基本机制仍然未知。在这里,我们研究了 Foxo 转录因子在小鼠精子发生中的作用,并发现 Foxo1 特异性标记了具有干细胞潜能的小鼠性原细胞和一部分精原细胞。遗传分析表明,Foxo1 对于 SSC 稳态和精子发生的启动都是必需的。Foxo1、Foxo3 和 Foxo4 的联合缺失导致 SSC 自我更新严重受损和分化完全阻断,表明 Foxo3 和 Foxo4 虽然对雄性生育力不是必需的,但有助于 SSC 的功能。通过在雄性生殖系中条件性失活 3-磷酸肌醇依赖性蛋白激酶 1(Pdk1)和磷酸酶和张力蛋白同源物(Pten),我们发现 PI3K 信号调节 Foxo1 的稳定性和亚细胞定位,表明 Foxos 是 SSCs 中 PI3K-Akt 信号的关键效应物。我们还鉴定了 Foxo 基因靶标的网络——特别是 Ret——这合理化了 Foxo 对 SSCs 的维持。这些研究表明,Foxo1 在精子发生谱系中的表达与干细胞状态密切相关,并揭示了我们认为是 SSC 自我更新和分化的新的 Foxo 依赖性机制,这些机制与常见疾病有关,包括由于 SSC 功能异常导致的男性不育和睾丸癌。