Immunoprecipitation of RNA–DNA hybrid interacting proteins in Trypanosoma brucei reveals conserved and novel activities, including in the control of surface antigen expression needed for immune evasion by antigenic variation

Author:

Girasol Mark J12,Briggs Emma M13,Marques Catarina A1,Batista José M1,Beraldi Dario1,Burchmore Richard1,Lemgruber Leandro1,McCulloch Richard1ORCID

Affiliation:

1. University of Glasgow, College of Medical, Veterinary and Life Sciences, School of Infection and Immunity, Wellcome Centre for Integrative Parasitology , Glasgow , UK

2. University of the Philippines Manila, College of Medicine , Manila , Philippines

3. University of Edinburgh, Institute for Immunology and Infection Research, School of Biological Sciences , Edinburgh , UK

Abstract

Abstract RNA–DNA hybrids are epigenetic features of genomes that provide a diverse and growing range of activities. Understanding of these functions has been informed by characterising the proteins that interact with the hybrids, but all such analyses have so far focused on mammals, meaning it is unclear if a similar spectrum of RNA–DNA hybrid interactors is found in other eukaryotes. The African trypanosome is a single-cell eukaryotic parasite of the Discoba grouping and displays substantial divergence in several aspects of core biology from its mammalian host. Here, we show that DNA–RNA hybrid immunoprecipitation coupled with mass spectrometry recovers 602 putative interactors in T. brucei mammal- and insect-infective cells, some providing activities also found in mammals and some lineage-specific. We demonstrate that loss of three factors, two putative helicases and a RAD51 paralogue, alters T. brucei nuclear RNA–DNA hybrid and DNA damage levels. Moreover, loss of each factor affects the operation of the parasite immune survival mechanism of antigenic variation. Thus, our work reveals the broad range of activities contributed by RNA–DNA hybrids to T. brucei biology, including new functions in host immune evasion as well as activities likely fundamental to eukaryotic genome function.

Funder

Wellcome Trust

Philippine Council for Health Research and Development

Welcome Trust Sir Henry Wellcome fellowship

University of Glasgow

BBSRC

Wellcome Trust Strategic Award

UKRI

Publisher

Oxford University Press (OUP)

Subject

Genetics

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