Jiang W-Q, Zhong Z-H, Henson J D, Reddel R R
Cancer Research Unit, Children's Medical Research Institute, Westmead, NSW, Australia.
Oncogene. 2007 Jul 12;26(32):4635-47. doi: 10.1038/sj.onc.1210260. Epub 2007 Feb 5.
Telomerase-negative cancer cells can maintain their telomeres by a recombination-mediated alternative lengthening of telomeres (ALT) process. We reported previously that sequestration of MRE11/RAD50/NBS1 complexes represses ALT-mediated telomere length maintenance, and suppresses formation of ALT-associated promyelocytic leukemia (PML) bodies (APBs). APBs are PML bodies containing telomeric DNA and telomere-binding proteins, and are observed only in a small fraction of cells within asynchronously dividing ALT-positive cell populations. Here, we report that methionine restriction caused a reversible arrest in G0/G1 phase of the cell cycle and reversible induction of APB formation in most cells within an ALT-positive population. We combined methionine restriction with RNA interference to test whether the following proteins are required for APB formation: PML body-associated proteins, PML and Sp100; telomere-associated proteins, TRF1, TRF2, TIN2 and RAP1; and DNA repair proteins, MRE11, RAD50, NBS1 and 53BP1. APB formation was not decreased by depletion of Sp100 (as reported previously) or of 53BP1, although 53BP1 partially colocalizes with APBs. Depletion of the other proteins suppressed APB formation. Because of the close linkage between ALT-mediated telomere maintenance and ability to form APBs, the eight proteins identified by this screen as being required for APB formation are also likely to be required for the ALT mechanism.
端粒酶阴性癌细胞可通过重组介导的端粒替代延长(ALT)过程来维持其端粒。我们之前报道过,隔离MRE11/RAD50/NBS1复合物可抑制ALT介导的端粒长度维持,并抑制ALT相关早幼粒细胞白血病(PML)小体(APB)的形成。APB是含有端粒DNA和端粒结合蛋白的PML小体,仅在异步分裂的ALT阳性细胞群体中的一小部分细胞中观察到。在此,我们报道蛋氨酸限制导致细胞周期在G0/G1期可逆性停滞,并在ALT阳性群体中的大多数细胞中可逆性诱导APB形成。我们将蛋氨酸限制与RNA干扰相结合,以测试以下蛋白质是否为APB形成所必需:PML小体相关蛋白PML和Sp1,00;端粒相关蛋白TRF1、TRF2、TIN2和RAP1;以及DNA修复蛋白MRE11、RAD50、NBS1和53BP1。Sp1,00(如之前报道)或53BP1的缺失并未减少APB的形成,尽管53BP1与APB部分共定位。其他蛋白质的缺失抑制了APB的形成。由于ALT介导的端粒维持与形成APB的能力之间存在紧密联系,因此通过该筛选确定的这八种蛋白质,也可能是ALT机制所必需的。