학술논문

RNAi-mediated knockdown of the Rhau helicase preferentially depletes proteins with a Guanine-quadruplex motif in the 5'-UTR of their mRNA.
Document Type
Article
Source
Biochemical & Biophysical Research Communications. Jan2019, Vol. 508 Issue 3, p756-761. 6p.
Subject
*RNA interference
*QUADRUPLEX nucleic acids
*GUANINE
*MESSENGER RNA
*LIQUID chromatography
Language
ISSN
0006-291X
Abstract
Abstract Guanine-quadruplex (G-quadruplex) structures in mRNAs have been shown to modulate gene expression. However, the overall biological relevance of this process is under debate, as cellular helicases unwind G-quadruplex structures. The helicase Rhau (encoded by the DHX36 gene) was reported to be the major source of RNA G-quadruplex resolving activity in lysates of human cells. In the current study, we depleted Rhau by RNAi-mediated silencing and analyzed the effect on proteins whose mRNAs harbor a G-quadruplex motif in their 5'-UTRs. A targeted investigation of the proto-oncogenes Bcl-2 and NRAS , which are well-known examples for the translational repression of G-quadruplex structures, did not reveal effects caused by Rhau silencing. We therefore carried out a global analysis of changes in protein levels by label-free quantification using liquid chromatography-electrospray ionization-tandem mass spectrometry (LC-ESI-MS/MS). Following Rhau knockdown, of all the identified proteins, only 1.9% were significantly downregulated to at least 70%. According to a bioinformatic analysis with the QGRS mapper, 33% of the downregulated proteins were predicted to harbor a G-quadruplex motif in the 5'-UTR of their respective mRNAs, compared to only 11% in the complete dataset. This indicates that in an unexpectedly small set of genes, in which G-quadruplex motifs are unusually common in the 5'-UTR of their mRNAs, Rhau helicase is responsible for the regulation of their expression. Graphical abstract Image 1 Highlights • RNA G-quadruplex structures have been shown to modulate gene expression. • The helicase Rhau is known to resolve RNA G-quadruplex structures. • Effects of Rhau silencing on overall protein expression was investigated. • Proteomic analysis identified only a small number of protein levels to be modulated. • Bioinformatics identified G-quadruplex containing mRNAs to be primarily affected. [ABSTRACT FROM AUTHOR]