Tier 3 — preclinical
SIRT6 is Responsible for More Efficient DNA Double-Strand Break Repair in Long-Lived Species
Cell
2019
Volume 177, issue 3, pages 622–638.e22
Bibliography
- PubMed
- PMID 31002797
- PubMed Central
- PMC6499390
- Funding
- US National Institutes of Health grants to V.G., A.S., V.N.G., Z.Z., and J.V., and Life Extension Foundation grants to V.G. and A.S.
- Competing interests
- The authors declared no competing interests.
Study snapshot
| Design | Comparative interspecies analysis across 18 rodent species using cell-based DNA repair reporter assays; mouse–beaver SIRT6 chimeric mutagenesis; in vitro enzymatic characterisation; Drosophila lifespan validation of species-specific SIRT6. |
|---|---|
| Model | Primary skin and lung fibroblasts from 18 rodent species with maximum lifespans of 3–32 years (including mouse, rat, gerbil, hamster, deer mouse, chinchilla, guinea pig, chipmunk, red squirrel, gray squirrel, woodchuck, porcupine, paca, capybara, blind mole rat, naked mole rat, and beaver); SIRT6-knockout mouse embryonic fibroblasts; SIRT6-knockout human dermal fibroblasts; UAS-Sirt6 transgenic Drosophila melanogaster on the Actin-GeneSwitch-Gal4 driver. |
| Sample | DSB repair assays run in at least 3 independent experiments per species per cell line, pooled from ≥100 stable clones per line to control for integration site effects. NHEJ efficiency and HR efficiency reporters integrated into skin and lung fibroblasts from all species. Drosophila lifespan cohorts of approximately 340–366 flies per genotype per sex, 6 bottles of 50–60 flies each. |
| Intervention | Chromosomal integration of GFP-based NHEJ and HR reporter constructs; overexpression of species-specific SIRT6 cDNAs in mouse and rat cells; site-directed mutagenesis of 5 identified amino acid residues (235, 249, 260, 263, 264) between mouse and beaver SIRT6; shRNA knockdown of SIRT6 in beaver fibroblasts; lentiviral expression of mouse WT, mouse-5mut, beaver WT, and beaver-5mut SIRT6 in SIRT6-knockout human dermal fibroblasts; RU486-induced transgenic Drosophila expression of species-specific SIRT6. |
| Duration | 3-day WST-1 cell survival readouts after UV irradiation; 12-day senescence-associated β-galactosidase assay after 5 Gy γ-radiation; Drosophila lifespan measurements to natural death (approximately 70–80 days). |
| Endpoints | Non-homologous end joining efficiency (GFP+/DsRed+ ratio); homologous recombination efficiency; nucleotide excision repair measured by host cell reactivation of UV-damaged luciferase plasmid; γ-H2AX and 53BP1 co-localised foci resolution at 1 h and 24 h; UV LD50 and γ-radiation LD50 by clonogenic assay; SIRT6-mediated stimulation of DSB repair across species; in vitro SIRT6 deacetylation of H3K9, H3K18, and H3K56; SIRT6 mono-ADP-ribosyltransferase activity; PARP1 activation by SIRT6; nucleosome binding by SIRT6; senescence-associated β-galactosidase positivity after γ-radiation; Drosophila median and maximum lifespan |