端粒
解旋酶
生物
DNA损伤
DNA
DNA修复
细胞生物学
DNA错配修复
核酸酶
DNA复制
分子生物学
遗传学
基因
核糖核酸
作者
Haoyang Jiang,Tianpeng Zhang,Hardeep Kaur,Shiyu Tao,Aravind Krishnan,Youngho Kwon,Patrick Sung,Roger A. Greenberg
标识
DOI:10.1016/j.molcel.2024.03.011
摘要
The Bloom syndrome (BLM) helicase is critical for alternative lengthening of telomeres (ALT), a homology-directed repair (HDR)-mediated telomere maintenance mechanism that is prevalent in cancers of mesenchymal origin. The DNA substrates that BLM engages to direct telomere recombination during ALT remain unknown. Here, we determine that BLM helicase acts on lagging strand telomere intermediates that occur specifically in ALT-positive cells to assemble a replication-associated DNA damage response. Loss of ATRX was permissive for BLM localization to ALT telomeres in S and G2, commensurate with the appearance of telomere C-strand-specific single-stranded DNA (ssDNA). DNA2 nuclease deficiency increased 5'-flap formation in a BLM-dependent manner, while telomere C-strand, but not G-strand, nicks promoted ALT. These findings define the seminal events in the ALT DNA damage response, linking aberrant telomeric lagging strand DNA replication with a BLM-directed HDR mechanism that sustains telomere length in a subset of human cancers.
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