Department of Molecular Genetics, Graduate School of Medicine, Kyoto University, Kyoto 606-8501, Japan;Precursory Research for Embryonic Science and Technology (PRESTO) and
Department of Molecular and Cellular Biology, Medical Institute of Bioregulation, Kyushu University, Fukuoka 812-8582, Japan.
Proc Natl Acad Sci U S A. 2014 Jun 17;111(24):8826-31. doi: 10.1073/pnas.1401837111. Epub 2014 May 30.
Spermatogonial stem cells (SSCs) undergo self-renewal divisions to support spermatogenesis throughout life. Although several positive regulators of SSC self-renewal have been discovered, little is known about the negative regulators. Here, we report that F-box and WD-40 domain protein 7 (FBXW7), a component of the Skp1-Cullin-F-box-type ubiquitin ligase, is a negative regulator of SSC self-renewal. FBXW7 is expressed in undifferentiated spermatogonia in a cell cycle-dependent manner. Although peptidyl-prolyl cis/trans isomerase NIMA-interacting 1 (PIN1), essential for spermatogenesis, is thought to destroy FBXW7, Pin1 depletion decreased FBXW7 expression. Spermatogonial transplantation showed that Fbxw7 overexpression compromised SSC activity whereas Fbxw7 deficiency enhanced SSC colonization and caused accumulation of undifferentiated spermatogonia, suggesting that the level of FBXW7 is critical for self-renewal and differentiation. Screening of putative FBXW7 targets revealed that Fbxw7 deficiency up-regulated myelocytomatosis oncogene (MYC) and cyclin E1 (CCNE1). Although depletion of Myc/Mycn or Ccne1/Ccne2 compromised SSC activity, overexpression of Myc, but not Ccne1, increased colonization of SSCs. These results suggest that FBXW7 regulates SSC self-renewal in a negative manner by degradation of MYC.
精原干细胞 (SSCs) 通过自我更新分裂来支持终生的精子发生。虽然已经发现了几个 SSC 自我更新的正调控因子,但对负调控因子知之甚少。在这里,我们报告 F-box 和 WD-40 结构域蛋白 7 (FBXW7),一种 Skp1-Cullin-F-box 型泛素连接酶的组成部分,是 SSC 自我更新的负调控因子。FBXW7 在细胞周期依赖性方式中在未分化的精原细胞中表达。虽然对精子发生至关重要的肽基脯氨酰顺/反异构酶 NIMA 相互作用 1 (PIN1) 被认为会破坏 FBXW7,但 PIN1 的耗竭会降低 FBXW7 的表达。精原干细胞移植表明,FBXW7 的过表达会损害 SSC 的活性,而 FBXW7 的缺失会增强 SSC 的定植并导致未分化的精原细胞积累,这表明 FBXW7 的水平对自我更新和分化至关重要。对潜在的 FBXW7 靶标的筛选表明,FBXW7 的缺失会上调髓细胞瘤癌基因 (MYC) 和细胞周期蛋白 E1 (CCNE1)。尽管 Myc/Mycn 或 Ccne1/Ccne2 的耗竭会损害 SSC 的活性,但 Myc 的过表达,而不是 Ccne1 的过表达,会增加 SSC 的定植。这些结果表明,FBXW7 通过降解 MYC 以负性方式调节 SSC 的自我更新。