Abstract

hnRNPA1 is a member of heteronuclear ribonucleoproteins that has been shown to promote telomere elongation apart from its roles in RNA transport and alternative splicing. It is a modular protein with an N-terminal domain called UP1 that consists of two RNA Recognition Motifs (RRM1 and RRM2 domains) and a C-terminal region that harbors functional motifs such as RGG-box, a prion-like domain, and a nuclear shuttling sequence. UP1 has been reported to bind and destabilize telomeric DNA G-quadruplexes and thereby participate in DNA telomere remodeling. An RGG-box motif that consists of four RGG repeats (containing arginine and glycine residues) is located C-terminal to the UP1 domain and constitutes an additional nucleic acid and protein-binding domain. However, the precise role of the RGG-box of hnRNPA1 in telomere DNA recognition and G-quadruplex DNA unfolding remains unexplored. Here, we show that the isolated RGG-box interacts specifically with the structured telomere G-quadruplex DNA but not with the single-stranded DNA. Further the interaction of the RGG-box with the G-quadruplex DNA is dependent on the loop nucleotides of the G-quadruplex. Finally, we show that the RGG-box enhances the G-quadruplex unfolding activity of the adjacent UP1 domain. We propose that UP1 and RGG-box act synergistically to achieve complete telomere G-quadruplex DNA unfolding.

Highlights

  • Imino region of 1D 1H NMR spectra of DNA used in this study

  • Individual fit dissociation constants (Kd) values determined for residues of the RGG-box for its interaction with Tel[22] G-quadruplex DNA

  • Purification of the proteins used in this study. (A) SDS PAGE showing purified UP1 and UP1+RGG proteins. (B) SDS PAGE of purified RGG-box after removal of GST-tag and size exclusion chromatography. (C) The mass of the RGG-box was further confirmed by MALDI –TOF MS analysis

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Summary

Introduction

A subset of unassigned residues of the RGG-box that show specific fast exchange chemical shift perturbations upon addition of Tel22DNA. Titration of K+ form of Tel[22] with UP1 and UP1+RGG and monitored through NMR.

Results
Conclusion
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