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  4. The interactome of KRAB zinc finger proteins reveals the evolutionary history of their functional diversification
 
research article

The interactome of KRAB zinc finger proteins reveals the evolutionary history of their functional diversification

Helleboid, Pierre‐Yves  
•
Heusel, Moritz
•
Duc, Julien  
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August 12, 2019
The EMBO Journal

Krüppel‐associated box (KRAB)‐containing zinc finger proteins (KZFPs) are encoded in the hundreds by the genomes of higher vertebrates, and many act with the heterochromatin‐inducing KAP1 as repressors of transposable elements (TEs) during early embryogenesis. Yet, their widespread expression in adult tissues and enrichment at other genetic loci indicate additional roles. Here, we characterized the protein interactome of 101 of the ~350 human KZFPs. Consistent with their targeting of TEs, most KZFPs conserved up to placental mammals essentially recruit KAP1 and associated effectors. In contrast, a subset of more ancient KZFPs rather interacts with factors related to functions such as genome architecture or RNA processing. Nevertheless, KZFPs from coelacanth, our most distant KZFP‐encoding relative, bind the cognate KAP1. These results support a hypothetical model whereby KZFPs first emerged as TE‐controlling repressors, were continuously renewed by turnover of their hosts’ TE loads, and occasionally produced derivatives that escaped this evolutionary flushing by development and exaptation of novel functions.

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Type
research article
DOI
10.15252/embj.2018101220
Author(s)
Helleboid, Pierre‐Yves  
Heusel, Moritz
Duc, Julien  
Piot, Cécile
Thorball, Christian W.  
Coluccio, Andrea  
Pontis, Julien  
Imbeault, Michaël  
Turelli, Priscilla
Aebersold, Ruedi  
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Date Issued

2019-08-12

Published in
The EMBO Journal
Start page

1

End page

16

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LVG  
FunderGrant Number

H2020

694658

EU funding

268721

FNS

310030_152879

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Available on Infoscience
August 14, 2019
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/159774
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