首页> 外文期刊>The Journal of Reproduction and Development >The CDKN1B-RB1-E2F1 pathway protects mouse spermatogonial stem cells from genomic damage
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The CDKN1B-RB1-E2F1 pathway protects mouse spermatogonial stem cells from genomic damage

机译:CDKN1B-RB1-E2F1途径可保护小鼠精原干细胞免受基因组损害

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摘要

Spermatogonial stem cells (SSCs) undergo self-renewal divisions to provide the foundation for spermatogenesis. Although Rb1 deficiency is reportedly essential for SSC self-renewal, its mechanism has remained unknown. Here we report that Rb1 is critical for cell cycle progression and protection of SSCs from DNA double-strand breaks (DSBs). Cultured SSCs depleted of Cdkn1b proliferated poorly and showed diminished expression of CDK4 and RB1, thereby leading to hypophosphorylation of RB1. Rb1 deficiency induced cell cycle arrest and apoptosis in cultured SSCs, which expressed markers for DNA DSBs. This DNA damage is caused by increased E2F1 activity, the depletion of which decreased DNA DSBs caused by Rb1 deficiency. Depletion of Cdkn1a and Bbc3, which were upregulated by Trp53, rescued Rb1-deficient cells from undergoing cell cycle arrest and apoptosis. These results suggest that the CDKN1B-RB1-E2F1 pathway is essential for SSC self-renewal and protects SSCs against genomic damage.
机译:精原干细胞(SSCs)进行自我更新分裂,为精子发生提供基础。尽管据报道Rb1缺乏对于SSC自我更新至关重要,但其机制仍然未知。在这里,我们报告Rb1对于细胞周期进程和SSC免受DNA双链断裂(DSBs)的保护至关重要。缺乏Cdkn1b的培养SSC增殖不良,并显示CDK4和RB1的表达减少,从而导致RB1的磷酸化不足。 Rb1缺乏诱导培养的SSC中的细胞周期停滞和凋亡,后者表达DNA DSB的标记。这种DNA损伤是由E2F1活性增加引起的,而E2F1活性的耗尽则是由Rb1缺乏引起的DNA DSB减少。 Trp53上调的Cdkn1a和Bbc3的耗尽使Rb1缺陷型细胞免于经历细胞周期停滞和凋亡。这些结果表明,CDKN1B-RB1-E2F1途径对于SSC自我更新至关重要,并能保护SSC免受基因组损害。

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