Ruminant-specific retrotransposons shape regulatory evolution of bovine immunity
Kelly, C. J.; Chitko-McKown, C.; Chuong, E. B.
Show abstract
Cattle are an important livestock species, and mapping the genomic architecture of agriculturally relevant traits such as disease susceptibility is a major challenge in the bovine research community. Lineage-specific transposable elements (TEs) are increasingly recognized to contribute to gene regulatory evolution and variation, but this possibility has been largely unexplored in ruminant genomes. We conducted epigenomic profiling of the type II interferon (IFN) response in bovine cells, and found thousands of ruminant-specific TEs including MER41_BT and Bov-A2 elements predicted to act as IFN-inducible enhancer elements. CRISPR knockout experiments in bovine cells established that critical immune factors including IFNAR2 and IL2RB are transcriptionally regulated by TE-derived enhancers. Finally, population genomic analysis of 38 individuals revealed that a subset of TE-derived enhancers represent polymorphic insertion sites in modern cattle. Our study reveals that lineage-specific TEs have shaped the evolution of ruminant IFN responses, and potentially continue to contribute to immune gene regulatory differences across modern breeds and individuals. Together with previous work in human cells, our findings demonstrate that lineage-specific TEs have been independently co-opted to regulate IFN-inducible gene expression in multiple species, supporting TE co-option as a recurrent mechanism driving the evolution of IFN-inducible transcriptional networks.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Epstein-Barr virus nuclear antigen 2 (EBNA2) extensively rewires the human chromatin landscape at autoimmune risk loci 96%
- Suv39h-catalysed H3K9me3 is critical for euchromatic genome organisation and the maintenance of gene transcription 95%
- Transposable elements and their KZFP controllers are drivers of transcriptional innovation in the developing human brain 95%
Similar papers in this journal
- Human cytomegalovirus infection coopts chromatin organization to diminish TEAD1 transcription factor activity 96%
- Sequence features of retrotransposons allow for epigenetic variability 95%
- Identification of putative enhancer-like elements predicts regulatory networks active in planarian adult stem cells 95%
Similar papers in this journal
Similar papers in this journal
- Characterising open chromatin identifies novel cis-regulatory elements important for paraxial mesoderm formation and axis extension 94%
- Temporal constraints on enhancer usage shape the regulation of limb gene transcription 94%
- TASOR is a pseudo-PARP that directs HUSH complex assembly and epigenetic transposon control 94%
"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.