Genetic compensation triggered by mutant mRNA degradation
Paper for discussion:
Genetic compensation triggered by mutant mRNA degradation
www.nature.com/articles/s41586-019-1064-z
Abstract:
Genetic robustness, or the ability of an organism to maintain fitness in the presence of harmful mutations, can be achieved via protein feedback loops. Previous work has suggested that organisms may also respond to mutations by transcriptional adaptation, a process by which related gene(s) are upregulated independently of protein feedback loops. However, the prevalence of transcriptional adaptation and its underlying molecular mechanisms are unknown. Here, by analysing several models of transcriptional adaptation in zebrafish and mouse, we uncover a requirement for mutant mRNA degradation. Alleles that fail to transcribe the mutated gene do not exhibit transcriptional adaptation, and these alleles give rise to more severe phenotypes than alleles displaying mutant mRNA decay. Transcriptome analysis in alleles displaying mutant mRNA decay reveals the upregulation of a substantial proportion of the genes that exhibit sequence similarity with the mutated gene’s mRNA, suggesting a sequence-dependent mechanism. These findings have implications for our understanding of disease-causing mutations, and will help in the design of mutant alleles with minimal transcriptional adaptation-derived compensation.
Date: 5 June 2019, 12:00 (Wednesday, 6th week, Trinity 2019)
Venue: Wellcome Trust Centre for Human Genetics, Headington OX3 7BN
Venue Details: Room B
Speaker: Thomas Nicol (University of Oxford)
Organising department: Nuffield Department of Clinical Medicine
Part of: Old Road Campus Journal Club
Topics:
Booking required?: Recommended
Booking email: dphil-journal-club-subscribe@maillist.ox.ac.uk
Audience: Members of the University only
Editor: Isabel Schmidt