Discovery of RUF6 ncRNA–interacting proteins involved inP. falciparumimmune evasion
Proteomics
0301 basic medicine
03 medical and health sciences
RNA, Untranslated
Gene Expression Regulation
Plasmodium falciparum
RNA Polymerase II
Research Articles
Immune Evasion
DOI:
10.26508/lsa.202201577
Publication Date:
2022-11-15T23:20:14Z
AUTHORS (6)
ABSTRACT
Non-coding RNAs (ncRNAs) are emerging regulators of immune evasion and transmission ofPlasmodium falciparum. RUF6 is an ncRNA gene family that is transcribed by RNA polymerase III but actively regulates the Pol II–transcribedvarvirulence gene family. Understanding how RUF6 ncRNA connects to downstream effectors is lacking. We developed an RNA-directed proteomic discovery (ChIRP-MS) protocol to identify in vivo RUF6 ncRNA–protein interactions. The RUF6 ncRNA interactome was purified with biotinylated antisense oligonucleotides. Quantitative label-free mass spectrometry identified several unique proteins linked to gene transcription including RNA Pol II subunits, nucleosome assembly proteins, and a homologue of DEAD box helicase 5 (DDX5). Affinity purification of Pf-DDX5 identified proteins originally found by our RUF6-ChIRP protocol, validating the technique’s robustness for identifying ncRNA interactomes inP. falciparum. Inducible displacement of nuclear Pf-DDX5 resulted in significant down-regulation of the activevargene. Our work identifies a RUF6 ncRNA–protein complex that interacts with RNA Pol II to sustain thevargene expression, including a helicase that may resolve G-quadruplex secondary structures invargenes to facilitate transcriptional activation and progression.
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