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Regulation of cellular sterol homeostasis by the oxygen responsive noncoding RNA lincNORS.


ABSTRACT: We hereby provide the initial portrait of lincNORS, a spliced lincRNA generated by the MIR193BHG locus, entirely distinct from the previously described miR-193b-365a tandem. While inducible by low O2 in a variety of cells and associated with hypoxia in vivo, our studies show that lincNORS is subject to multiple regulatory inputs, including estrogen signals. Biochemically, this lincRNA fine-tunes cellular sterol/steroid biosynthesis by repressing the expression of multiple pathway components. Mechanistically, the function of lincNORS requires the presence of RALY, an RNA-binding protein recently found to be implicated in cholesterol homeostasis. We also noticed the proximity between this locus and naturally occurring genetic variations highly significant for sterol/steroid-related phenotypes, in particular the age of sexual maturation. An integrative analysis of these variants provided a more formal link between these phenotypes and lincNORS, further strengthening the case for its biological relevance.

SUBMITTER: Wu X 

PROVIDER: S-EPMC7505984 | biostudies-literature | 2020 Sep

REPOSITORIES: biostudies-literature

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Regulation of cellular sterol homeostasis by the oxygen responsive noncoding RNA lincNORS.

Wu Xue X   Niculite Cristina M CM   Preda Mihai Bogdan MB   Rossi Annalisa A   Tebaldi Toma T   Butoi Elena E   White Mattie K MK   Tudoran Oana M OM   Petrusca Daniela N DN   Jannasch Amber S AS   Bone William P WP   Zong Xingyue X   Fang Fang F   Burlacu Alexandrina A   Paulsen Michelle T MT   Hancock Brad A BA   Sandusky George E GE   Mitra Sumegha S   Fishel Melissa L ML   Buechlein Aaron A   Ivan Cristina C   Oikonomopoulos Spyros S   Gorospe Myriam M   Mosley Amber A   Radovich Milan M   Davé Utpal P UP   Ragoussis Jiannis J   Nephew Kenneth P KP   Mari Bernard B   McIntyre Alan A   Konig Heiko H   Ljungman Mats M   Cousminer Diana L DL   Macchi Paolo P   Ivan Mircea M  

Nature communications 20200921 1


We hereby provide the initial portrait of lincNORS, a spliced lincRNA generated by the MIR193BHG locus, entirely distinct from the previously described miR-193b-365a tandem. While inducible by low O<sub>2</sub> in a variety of cells and associated with hypoxia in vivo, our studies show that lincNORS is subject to multiple regulatory inputs, including estrogen signals. Biochemically, this lincRNA fine-tunes cellular sterol/steroid biosynthesis by repressing the expression of multiple pathway comp  ...[more]

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