惊鸿 (2023-03-27 11:42):
#paper doi:https://ma.x-mol.com/paperRedirect/1639426668090503168 Thymidine nucleotide metabolism controls human telomere length 人类的端粒长度与寿命和严重疾病有关,但端粒长度的遗传决定因素仍未完全确定。在这里,我们进行了全基因组 CRISPR-Cas9 功能性端粒长度筛选,并将胸苷 (dT) 核苷酸代谢确定为人类端粒维持的限制因素。使用 CRISPR-Cas9 的靶向基因破坏揭示了胸苷核苷酸代谢途径中的多个端粒长度控制点:通过删除编码核胸苷激酶 ( TK1 ) 的基因减少 dT 核苷酸回收或通过敲除胸苷酸合酶基因 (TYMS )从头产生端粒长度减少,而脱氧核苷三磷酸水解酶编码基因SAMHD1失活延长的端粒。值得注意的是,单独补充 dT 可通过细胞中的端粒酶驱动端粒的稳健延伸,并且三磷酸胸苷在体外以底物非依赖性方式刺激端粒酶活性。在源自遗传性端粒生物学障碍患者的诱导多能干细胞中,补充 dT 或抑制SAMHD1可促进端粒恢复。我们的结果表明胸苷代谢在控制人端粒酶和端粒长度方面的关键作用,这可能对致命的退行性疾病患者具有治疗作用。
IF:31.700Q1 Nature genetics, 2023-04. DOI: 10.1038/s41588-023-01339-5 PMID: 36959362
Thymidine nucleotide metabolism controls human telomere length
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Abstract:
Telomere length in humans is associated with lifespan and severe diseases, yet the genetic determinants of telomere length remain incompletely defined. Here we performed genome-wide CRISPR-Cas9 functional telomere length screening and identified thymidine (dT) nucleotide metabolism as a limiting factor in human telomere maintenance. Targeted genetic disruption using CRISPR-Cas9 revealed multiple telomere length control points across the thymidine nucleotide metabolism pathway: decreasing dT nucleotide salvage via deletion of the gene encoding nuclear thymidine kinase (TK1) or de novo production by knockout of the thymidylate synthase gene (TYMS) decreased telomere length, whereas inactivation of the deoxynucleoside triphosphohydrolase-encoding gene SAMHD1 lengthened telomeres. Remarkably, supplementation with dT alone drove robust telomere elongation by telomerase in cells, and thymidine triphosphate stimulated telomerase activity in a substrate-independent manner in vitro. In induced pluripotent stem cells derived from patients with genetic telomere biology disorders, dT supplementation or inhibition of SAMHD1 promoted telomere restoration. Our results demonstrate a critical role of thymidine metabolism in controlling human telomerase and telomere length, which may be therapeutically actionable in patients with fatal degenerative diseases.
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