Biophysical characterisation of human LincRNA-p21 sense and antisense Alu inverted repeats

Author:

D’Souza Michael H1ORCID,Mrozowich Tyler1ORCID,Badmalia Maulik D1ORCID,Geeraert Mitchell1,Frederickson Angela1,Henrickson Amy1ORCID,Demeler Borries123ORCID,Wolfinger Michael T45ORCID,Patel Trushar R167ORCID

Affiliation:

1. Department of Chemistry and Biochemistry, Alberta RNA Research and Training Institute, University of Lethbridge , 4401 University Drive, Lethbridge , AB T1K 3M4 , Canada

2. Department of Chemistry and Biochemistry, University of Montana , Missoula , MT 59812 , USA

3. NorthWest Biophysics Consortium, University of Lethbridge, University of Lethbridge, 4401 University Drive , Lethbridge , AB T1K 3M4 , Canada

4. Bioinformatics and Computational Biology, Faculty of Computer Science , Währingerstrasse 29, 1090 Vienna , Austria

5. Department of Theoretical Chemistry, University of Vienna , Währingerstrasse 17, 1090 Vienna , Austria

6. Department of Microbiology, Immunology and Infectious Disease, Cumming School of Medicine, University of Calgary , Calgary , AB T2N 1N4 , Canada

7. Li Ka Shing Institute of Virology and Discovery Lab, University of Alberta , Edmonton , AB T6G 2E1 , Canada

Abstract

AbstractHuman Long Intergenic Noncoding RNA-p21 (LincRNA-p21) is a regulatory noncoding RNA that plays an important role in promoting apoptosis. LincRNA-p21 is also critical in down-regulating many p53 target genes through its interaction with a p53 repressive complex. The interaction between LincRNA-p21 and the repressive complex is likely dependent on the RNA tertiary structure. Previous studies have determined the two-dimensional secondary structures of the sense and antisense human LincRNA-p21 AluSx1 IRs using SHAPE. However, there were no insights into its three-dimensional structure. Therefore, we in vitro transcribed the sense and antisense regions of LincRNA-p21 AluSx1 Inverted Repeats (IRs) and performed analytical ultracentrifugation, size exclusion chromatography, light scattering, and small angle X-ray scattering (SAXS) studies. Based on these studies, we determined low-resolution, three-dimensional structures of sense and antisense LincRNA-p21. By adapting previously known two-dimensional information, we calculated their sense and antisense high-resolution models and determined that they agree with the low-resolution structures determined using SAXS. Thus, our integrated approach provides insights into the structure of LincRNA-p21 Alu IRs. Our study also offers a viable pipeline for combining the secondary structure information with biophysical and computational studies to obtain high-resolution atomistic models for long noncoding RNAs.

Funder

NSERC

South Alberta Light Horse Regimental Foundation, The King's Own Calgary Regiment

Foundation, and the Canadian Armed Forces

Alberta Innovates

Natural Sciences and Engineering Research Council of Canada

Canada Research Chair

Canada Foundation for Innovation

Canada 150 Research Chairs program

National Institutes of Health

Canadian Natural Science and Engineering Research Council

NSF/XSEDE

DIAMOND Synchrotron

Publisher

Oxford University Press (OUP)

Subject

Genetics

Reference122 articles.

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