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research article

Ancestral genome reconstruction enhances transposable element annotation by identifying degenerate integrants

Matsushima, Wayo  
•
Planet, Evarist  
•
Trono, Didier  
2024
Cell Genomics

Growing evidence indicates that transposable elements (TEs) play important roles in evolution by providing genomes with coding and non-coding sequences. Identification of TE-derived functional elements, however, has relied on TE annotations in individual species, which limits its scope to relatively intact TE sequences. Here, we report a novel approach to uncover previously unannotated degenerate TEs (degTEs) by probing multiple ancestral genomes reconstructed from hundreds of species. We applied this method to the human genome and achieved a 10.8% increase in coverage over the most recent annotation. Further, we discovered that degTEs contribute to various cis-regulatory elements and transcription factor binding sites, including those of a known TE-controlling family, the KRAB zinc-finger proteins. We also report unannotated chimeric transcripts between degTEs and human genes expressed in embryos. This study provides a novel methodology and a freely available resource that will facilitate the investigation of TE co-option events on a full scale.

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Type
research article
DOI
10.1016/j.xgen.2024.100497
Author(s)
Matsushima, Wayo  
Planet, Evarist  
Trono, Didier  
Date Issued

2024

Published in
Cell Genomics
Volume

4

Article Number

100497

Subjects

transposable elements

•

transposon

•

gene regulation

•

genome evolution

•

KRAB zinc-finger protein

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endogenous retrovirus

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cis-regulatory element

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promoter

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enhancer

•

splice variant

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LVG  
Available on Infoscience
February 1, 2024
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/203413
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