Sarek Grzegorz, Vannier Jean-Baptiste, Panier Stephanie, Petrini John H J, Boulton Simon J
Clare Hall Laboratories, London Research Institute, Cancer Research UK, Clare Hall, South Mimms, Hertfordshire EN6 3LD, UK.
Molecular Biology Program, Memorial Sloan-Kettering Cancer Center, New York, NY 10065, USA.
Mol Cell. 2015 Feb 19;57(4):622-635. doi: 10.1016/j.molcel.2014.12.024. Epub 2015 Jan 22.
The helicase RTEL1 promotes t-loop unwinding and suppresses telomere fragility to maintain the integrity of vertebrate telomeres. An interaction between RTEL1 and PCNA is important to prevent telomere fragility, but how RTEL1 engages with the telomere to promote t-loop unwinding is unclear. Here, we establish that the shelterin protein TRF2 recruits RTEL1 to telomeres in S phase, which is required to prevent catastrophic t-loop processing by structure-specific nucleases. We show that the TRF2-RTEL1 interaction is mediated by a metal-coordinating C4C4 motif in RTEL1, which is compromised by the Hoyeraal-Hreidarsson syndrome (HHS) mutation, RTEL1(R1264H). Conversely, we define a TRF2(I124D) substitution mutation within the TRFH domain of TRF2, which eliminates RTEL1 binding and phenocopies the RTEL1(R1264H) mutation, giving rise to aberrant t-loop excision, telomere length heterogeneity, and loss of the telomere as a circle. These results implicate TRF2 in the recruitment of RTEL1 to facilitate t-loop disassembly at telomeres in S phase.
解旋酶RTEL1促进t环解旋并抑制端粒脆性,以维持脊椎动物端粒的完整性。RTEL1与增殖细胞核抗原(PCNA)之间的相互作用对于防止端粒脆性很重要,但RTEL1如何与端粒结合以促进t环解旋尚不清楚。在这里,我们证实了保护蛋白TRF2在S期将RTEL1招募到端粒,这是防止结构特异性核酸酶对t环进行灾难性加工所必需的。我们表明,TRF2与RTEL1的相互作用是由RTEL1中一个金属配位的C4C4基序介导的,该基序因霍耶拉尔-赫雷达尔松综合征(HHS)突变RTEL1(R1264H)而受损。相反,我们在TRF2的TRFH结构域中定义了一个TRF2(I124D)替代突变,该突变消除了RTEL1的结合,并模拟了RTEL1(R1264H)突变,导致异常的t环切除、端粒长度异质性以及端粒环的丢失。这些结果表明TRF2参与了RTEL1的招募,以促进S期端粒处t环的拆解。