| Literature DB >> 34761272 |
Arpita Ghosh1,2, Satya Prakash Pandey1,2, Asgar Hussain Ansari1,2, Jennifer Seematti Sundar1, Praveen Singh1,2, Yasmeen Khan1,2, Mary Krishna Ekka1,2, Debojyoti Chakraborty1,2, Souvik Maiti1,2,3.
Abstract
MALAT1, an abundant lncRNA specifically localized to nuclear speckles, regulates alternative-splicing (AS). The molecular basis of its role in AS remains poorly understood. Here, we report three conserved, thermodynamically stable, parallel RNA-G-quadruplexes (rG4s) present in the 3' region of MALAT1 which regulates this function. Using rG4 domain-specific RNA-pull-down followed by mass-spectrometry, RNA-immuno-precipitation, and imaging, we demonstrate the rG4 dependent localization of Nucleolin (NCL) and Nucleophosmin (NPM) to nuclear speckles. Specific G-to-A mutations that abolish rG4 structures, result in the localization loss of both the proteins from speckles. Functionally, disruption of rG4 in MALAT1 phenocopies NCL knockdown resulting in altered pre-mRNA splicing of endogenous genes. These results reveal a central role of rG4s within the 3' region of MALAT1 orchestrating AS.Entities:
Mesh:
Substances:
Year: 2022 PMID: 34761272 PMCID: PMC8754661 DOI: 10.1093/nar/gkab1066
Source DB: PubMed Journal: Nucleic Acids Res ISSN: 0305-1048 Impact factor: 16.971