bioRxiv · 10.1101/2021.09.19.460961
The master energy homeostasis regulator PGC-1alpha couples transcriptional co-activation and mRNA nuclear export
Abstract
PGC-1 plays a central role in maintaining the mitochondrial and energy metabolism homeostasis, linking external stimuli to the transcriptional co-activation of genes involved in adaptive and age-related pathways. The carboxyl-terminus encodes a serine/arginine-rich (RS) region and a putative RNA recognition motif, however potential RNA-processing role(s) have remained elusive for the past 20 years. Here, we show that the RS domain of human PGC-1 directly interacts with RNA and the nuclear RNA export factor NXF1. Inducible depletion of endogenous PGC-1 and expression of RNAi-resistant RS-deleted PGC-1 further demonstrate that the RNA-binding activity is required for nuclear export of co-activated transcripts and mitochondrial homeostasis. Moreover, a quantitative proteomics approach confirmed PGC-1-dependent RNA transport and mitochondrial-related functions, identifying also novel mRNA nuclear export targets in age-related telomere maintenance. Discovering a novel function for a major cellular homeostasis regulator provides new directions to further elucidate the roles of PGC-1 in gene expression, metabolic disorders, ageing and neurodegenerative diseases.
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Mihaylov, S. R., Castelli, L. M., Lin, Y.-H., Gul, A., Soni, N., Hastings, C., Flynn, H. R., Dickman, M. J., Snijders, A. P., Bandmann, O., Mortiboys, H., Ultanir, S. K., Hautbergue, G. M.. 2021-09-19. The master energy homeostasis regulator PGC-1alpha couples transcriptional co-activation and mRNA nuclear export. https://doi.org/10.1101/2021.09.19.460961
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