Center for Cancer and Stem Cell Biology, Institute of Biosciences and Technology, Texas A&M Health Science Center, Houston, TX 77030, USA.
J Cell Biol. 2012 May 28;197(5):613-24. doi: 10.1083/jcb.201109038.
Continuously dividing cells must be protected from telomeric and nontelomeric DNA damage in order to maintain their proliferative potential. Here, we report a novel telomere-protecting mechanism regulated by nucleostemin (NS). NS depletion increased the number of telomere damage foci in both telomerase-active (TA(+)) and alternative lengthening of telomere (ALT) cells and decreased the percentage of damaged telomeres associated with ALT-associated PML bodies (APB) and the number of APB in ALT cells. Mechanistically, NS could promote the recruitment of PML-IV to SUMOylated TRF1 in TA(+) and ALT cells. This event was stimulated by DNA damage. Supporting the importance of NS and PML-IV in telomere protection, we demonstrate that loss of NS or PML-IV increased the frequency of telomere damage and aberration, reduced telomeric length, and perturbed the TRF2(ΔBΔM)-induced telomeric recruitment of RAD51. Conversely, overexpression of either NS or PML-IV protected ALT and TA(+) cells from telomere damage. This work reveals a novel mechanism in telomere protection.
为了维持细胞的增殖潜能,不断分裂的细胞必须免受端粒和非端粒 DNA 损伤的影响。在这里,我们报告了一种由核干细胞蛋白(NS)调控的新型端粒保护机制。NS 耗竭增加了端粒酶活性(TA(+))和端粒延长替代(ALT)细胞中端粒损伤焦点的数量,并降低了与 ALT 相关的 PML 体(APB)相关的受损端粒的百分比和 ALT 细胞中 APB 的数量。从机制上讲,NS 可以促进 PML-IV 在 TA(+) 和 ALT 细胞中募集 SUMO 化的 TRF1。该事件受 DNA 损伤刺激。为了支持 NS 和 PML-IV 在端粒保护中的重要性,我们证明了 NS 或 PML-IV 的缺失增加了端粒损伤和畸变的频率,缩短了端粒长度,并扰乱了 TRF2(ΔBΔM)诱导的 RAD51 在端粒上的募集。相反,NS 或 PML-IV 的过表达均可保护 ALT 和 TA(+) 细胞免受端粒损伤。这项工作揭示了端粒保护的一种新机制。