bioRxiv · 10.1101/2021.05.12.443907
HASTER is a transcriptional stabilizer of HNF1A
Abstract
The biological purpose and disease relevance of long noncoding RNAs (lncRNAs) is poorly understood. We examined HASTER, a lncRNA antisense to HNF1A. Haploinsufficient mutations in HNF1A, encoding a homeodomain transcription factor, cause diabetes mellitus. Using mouse and human models, we show that HASTER maintains HNF1A at cell-specific physiological concentrations through positive and negative feedback loops. Haster mutant pancreatic {beta} cells thus showed variegated HNF1A overexpression or silencing, causing insulin-deficiency and diabetes. We demonstrate that the HASTER promoter acts in cis to prevent HNF1A overexpression and silencing, and link HASTER-dependent inhibition to local remodelling of 3D chromatin architecture. We further show that HASTER negative feedback ensures that HNF1A creates open chromatin at appropriate cell-specific genome regions. Our studies expose a cis-regulatory element that is unlike enhancers or silencers, and instead stabilizes expression levels of a pioneer transcription factor. They also show that disruption of a mammalian lncRNA can cause diabetes mellitus.
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Beucher, A., Miguel-Escalada, I., Balboa Alonso, D., De Vas, M. G., Maestro, M. A., Garcia-Hurtado, J., Bernal, A., Heyn, H., Gonzalez Franco, R., Vargiu, P., Ortega, S., Ravassard, P., Ferrer, J.. 2021-05-14. HASTER is a transcriptional stabilizer of HNF1A. https://doi.org/10.1101/2021.05.12.443907
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