Healing of chromosomal breaks is impeded in cells expressing progerin
Bondurant, A. A.; Grove, E. K.; Van, N. M.; DiCintio, A. J.; Waldman, A. S.
Show abstract
Hutchinson-Gilford Progeria Syndrome (HGPS) is a rare genetic condition characterized by features of accelerated aging, with a life expectancy of less than two decades. HGPS is commonly caused by a point mutation in the LMNA gene which codes for lamin A, a vital component of the nuclear lamina. The HGPS mutation activates a cryptic splice site and leads to production of a truncated, farnesylated form of lamin A referred to as "progerin." Progerin is also produced in small amounts in healthy individuals and has been implicated in normal aging. HGPS is associated with an accumulation of genomic DNA double-strand breaks (DSBs), and alterations in DSB repair. DSB repair in mammalian cells normally occurs by either homologous recombination (HR), an accurate, templated form of repair, or by DNA end-joining (EJ), a non-templated rejoining of DNA ends. EJ is error-prone, although a portion of EJ events occurs precisely with no alteration to joined sequences. Previously, we reported that over-expression of progerin increased EJ relative to HR and decreased the precision of EJ. In our current work, we designed a novel model experimental system using derivatives of thymidine kinase (tk)-deficient mouse fibroblasts and incorporating a loss-of-function assay to further explore progerins impact on EJ. We established cell lines containing an integrated copy of a functional herpes tk gene with an embedded recognition site for endonuclease I-SceI. We examined EJ at the nucleotide level following induction of a DSB within the tk gene by expression of I-SceI and subsequent selection for cells that lost tk gene function. Comparison of EJ products recovered from cells expressing progerin versus from cells not expressing progerin revealed that progerin expression provoked larger DNA deletions associated with DSB repair as well as recovery of multiple repair products from individual cells, suggesting progerin impedes re-joining of DNA ends.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Inhibition of de novo ceramide biosynthesis affects aging phenotype in an in vitro model of neuronal senescence 92%
- Healthspan pathway maps in C. elegans and humans highlight transcription, prolifera-tion/biosynthesis and lipids 91%
- Crosstalk between age accumulated DNA-damage and the SIRT1-AKT-GSK3b axis in urine derived renal progenitor cells 91%
Similar papers in this journal
- A genome-wide screen identifies genes that suppress the accumulation of spontaneous mutations in young and aged yeast cells 94%
- Comparative analysis of epigenetic aging clocks from CpG characteristics to functional associations 93%
- Enhanced C/EBPα function extends healthspan and lifespan in the African turquoise killifish 92%
Similar papers in this journal
- Amino acids whose intracellular levels change most during aging alter chronological lifespan of fission yeast 92%
- Allele-specific transcript abundance: A pilot study in healthy centenarians 91%
- Genetically Increased Telomere Length and Aging-related Physical and Cognitive Traits in the UK Biobank 90%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.