Related Experiment Video
Updated: Aug 7, 2026

Studying Age-dependent Genomic Instability using the S. cerevisiae Chronological Lifespan Model
Published on: September 29, 2011
Developmental switches in reiterated genes may reduce the rate of age changes in DNA
Abstract:
The possible role of the redundancy of genetic information in the regulation of the ageing rate has been discussed in several works. However, it was shown recently that the gene reiteration in most cases is represented by families of similar, but not identical genes. Their expression usually related to the different stages of development and when "early" embryonic or fetal genes are active, the "late" or adult genes are repressed. It is known that the DNA repair needs double stranded structure of DNA which is usual for inactive genes. Genes which are being transcribed and active are repressed by unwound, relaxed DNA which is less protected by the DNA repair enzymes. Aging of genetic information in somatic cells can be, therefore, considered as stage specific and alterations of "early" embryonic and fetal genes do not constitute the genetic load which influences the ageing rate of differentiated cells.
More Related Videos
11:08Combining Magnetic Sorting of Mother Cells and Fluctuation Tests to Analyze Genome Instability During Mitotic Cell Aging in Saccharomyces cerevisiae
Published on: October 16, 2014
06:21An Ecdysone Receptor-based Singular Gene Switch for Deliberate Expression of Transgene with Robustness, Reversibility, and Negligible Leakiness
Published on: May 7, 2018
Related Concept Videos
Replication in Eukaryotes
Epigenetic Regulation
Replicative Cell Senescence
Epigenetic Regulation
X-chromosome...
Replication in Eukaryotes
Many Proteins Orchestrate Replication at the Origin
Eukaryotic replication follows many of the same...
Replicative Cell Senescence