CNRS, INSERM, Aix Marseille Univ, Institut Paoli-Calmettes, CRCM, Equipe labellisée par la Ligue Nationale contre le Cancer, Marseille, F-13009, France.
Department of Inflammation and Immunity, Lerner Research Institute, Cleveland Clinic Foundation, Cleveland, OH, USA.
Nucleic Acids Res. 2022 Nov 11;50(20):11682-11695. doi: 10.1093/nar/gkac986.
Telomere elongation is coupled with genome replication, raising the question of the repair of short telomeres in post-mitotic cells. We investigated the fate of a telomere-repeat capped end that mimics a single short telomere in quiescent fission yeast cells. We show that telomerase is able to elongate this single short telomere during quiescence despite the binding of Ku to the proto-telomere. While Taz1 and Rap1 repress telomerase in vegetative cells, both shelterin proteins are required for efficient telomere extension in quiescent cells, underscoring a distinct mode of telomerase control. We further show that Rad3ATR and Tel1ATM are redundantly required for telomere elongation in quiescence through the phosphorylation of Ccq1 and that Rif1 and its associated-PP1 phosphatases negatively regulate telomerase activity by opposing Ccq1 phosphorylation. The distinct mode of telomerase regulation in quiescent fission yeast cells may be relevant to that in human stem and progenitor cells.
端粒延长与基因组复制相关,这引发了关于有丝分裂后细胞中端粒缩短的修复问题。我们研究了一种端粒重复帽状末端的命运,该末端模拟了静止裂殖酵母细胞中的单个短端粒。我们发现,端粒酶能够在静止期延长这个单个短端粒,尽管 Ku 蛋白结合到原端粒上。虽然 Taz1 和 Rap1 在营养细胞中抑制端粒酶,但这两种庇护蛋白对于静止细胞中端粒的有效延伸都是必需的,这凸显了端粒酶控制的一种独特模式。我们进一步表明,Rad3ATR 和 Tel1ATM 通过磷酸化 Ccq1 对于静止期端粒延伸是冗余的, Rif1 及其相关的 PP1 磷酸酶通过拮抗 Ccq1 的磷酸化来负调控端粒酶活性。静止裂殖酵母细胞中端粒酶调控的这种独特模式可能与人类干细胞和祖细胞中的相关模式有关。