Sanford Samantha L, Badstübner Mareike, Gerber Michael, Mannherz William, Lampl Noah, Dannenberg Rachel, Hinchie Angela, Schaich Matthew A, Myong Sua, Hedglin Mark, Agarwal Suneet, Alder Jonathan K, Stone Michael D, Opresko Patricia L
UPMC Hillman Cancer Center, Pittsburgh, PA, USA.
Department of Chemistry and Biochemistry, University of California, Santa Cruz, Santa Cruz, CA, USA.
bioRxiv. 2025 Feb 19:2025.02.05.636339. doi: 10.1101/2025.02.05.636339.
Most cancers upregulate the telomere lengthening enzyme telomerase to achieve unlimited cell division. How chemotherapeutic nucleoside 6-thio-2'-deoxyguanosine (6-thio-dG) targets telomerase to inhibit telomere maintenance in cancer cells and tumors was unclear. Here, we demonstrate that telomerase insertion of 6-thio-dGTP prevents synthesis of additional telomeric repeats but does not disrupt telomerase binding to telomeres. Specifically, 6-thio-dG inhibits telomere extension after telomerase translocates along its product DNA to reposition the template, inducing a non-productive complex rather than enzyme dissociation. Furthermore, we provide direct evidence that 6-thio-dG treatment inhibits telomere synthesis by telomerase in cancer cells. In agreement, telomerase-expressing cancer cells harboring critically short telomeres are more sensitive to 6-thio-dG and show a greater induction of telomere losses compared to cancer cells with long telomere reserves. Our studies reveal that telomere length and telomerase status determine 6-thio-dG sensitivity and uncover the molecular mechanism by which 6-thio-dG selectively inhibits telomerase synthesis of telomeric DNA.
大多数癌症会上调端粒延长酶端粒酶,以实现细胞的无限分裂。化疗用核苷6-硫代-2'-脱氧鸟苷(6-硫代-dG)如何靶向端粒酶以抑制癌细胞和肿瘤中端粒的维持尚不清楚。在此,我们证明端粒酶插入6-硫代-dGTP可阻止额外端粒重复序列的合成,但不会破坏端粒酶与端粒的结合。具体而言,6-硫代-dG在端粒酶沿其产物DNA易位以重新定位模板后抑制端粒延伸,诱导形成非生产性复合物而非酶解离。此外,我们提供了直接证据表明6-硫代-dG处理可抑制癌细胞中端粒酶的端粒合成。与此一致的是,与具有长端粒储备的癌细胞相比,携带极短端粒的端粒酶表达癌细胞对6-硫代-dG更敏感,并且端粒丢失的诱导程度更高。我们的研究表明,端粒长度和端粒酶状态决定了6-硫代-dG的敏感性,并揭示了6-硫代-dG选择性抑制端粒酶合成端粒DNA的分子机制。