Thymidine nucleotide metabolism controls human telomere length. 2023

William Mannherz, and Suneet Agarwal
Division of Hematology/Oncology and Stem Cell Program, Boston Children's Hospital, Boston, MA, USA.

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.

UI MeSH Term Description Entries
D009711 Nucleotides The monomeric units from which DNA or RNA polymers are constructed. They consist of a purine or pyrimidine base, a pentose sugar, and a phosphate group. (From King & Stansfield, A Dictionary of Genetics, 4th ed) Nucleotide
D006801 Humans Members of the species Homo sapiens. Homo sapiens,Man (Taxonomy),Human,Man, Modern,Modern Man
D000076106 SAM Domain and HD Domain-Containing Protein 1 A host restriction triphosphorylhydrolase and dNTPase that contains an N-terminal STERILE ALPHA MOTIF and central, conserved ASPARTATE and HISTIDINE (HD) domain. It acts on single-stranded RNA, yielding deoxynucleosides and triphosphate, and functions in anti-viral defense through its dNTPase activity, reducing cellular dNTP levels below what is required for retroviral reverse transcription in DENDRITIC CELLS and MYELOID CELLS. It also has RIBONUCLEASE activity which blocks early replication of retroviruses such as HIV-1. Mutations in the SAMHD1 gene are associated with type 5 Aicardi-Goutieres syndrome (AGS5) and type 2 chilblain LUPUS (CHBL2). SAMHD1 Deoxynucleoside Triphosphate Triphosphohydrolase,SAMHD1 Protein,SAMHD1 dNTPase,SAM Domain and HD Domain Containing Protein 1
D013936 Thymidine A nucleoside in which THYMINE is linked to DEOXYRIBOSE. 2'-Deoxythymidine,Deoxythymidine,2' Deoxythymidine
D016615 Telomere A terminal section of a chromosome which has a specialized structure and which is involved in chromosomal replication and stability. Its length is believed to be a few hundred base pairs. Telomeres
D059505 Telomere Homeostasis Maintenance of TELOMERE length. During DNA REPLICATION, chromosome ends loose some of their telomere sequence (TELOMERE SHORTENING.) Various cellular mechanism are involved in repairing, extending, and recapping the telomere ends. Telomere Length Maintenance,Telomere Lengthening,Homeostasis, Telomere,Length Maintenance, Telomere,Lengthening, Telomere,Maintenance, Telomere Length
D019098 Telomerase An essential ribonucleoprotein reverse transcriptase that adds telomeric DNA to the ends of eukaryotic CHROMOSOMES. Telomerase Catalytic Subunit,Telomerase Reverse Transcriptase,Telomerase Reverse Transcriptase Catalytic Subunit,Catalytic Subunit, Telomerase,Reverse Transcriptase, Telomerase,Subunit, Telomerase Catalytic,Transcriptase, Telomerase Reverse

Related Publications

William Mannherz, and Suneet Agarwal
April 2023, Nature genetics,
William Mannherz, and Suneet Agarwal
October 2008, Mechanisms of ageing and development,
William Mannherz, and Suneet Agarwal
March 2020, American journal of human genetics,
William Mannherz, and Suneet Agarwal
November 2022, 3 Biotech,
William Mannherz, and Suneet Agarwal
May 2014, Reproductive biomedicine online,
William Mannherz, and Suneet Agarwal
March 2009, Molecular and cellular biology,
William Mannherz, and Suneet Agarwal
April 2013, The American journal of clinical nutrition,
William Mannherz, and Suneet Agarwal
January 2002, Methods in molecular medicine,
William Mannherz, and Suneet Agarwal
December 2020, Neuropsychopharmacology : official publication of the American College of Neuropsychopharmacology,
William Mannherz, and Suneet Agarwal
October 1996, Liver,
Copied contents to your clipboard!