The master energy homeostasis regulator PGC-1α exhibits an mRNA nuclear export function

被引:0
|
作者
Simeon R. Mihaylov
Lydia M. Castelli
Ya-Hui Lin
Aytac Gül
Nikita Soni
Christopher Hastings
Helen R. Flynn
Oana Păun
Mark J. Dickman
Ambrosius P. Snijders
Robert Goldstone
Oliver Bandmann
Tatyana A. Shelkovnikova
Heather Mortiboys
Sila K. Ultanir
Guillaume M. Hautbergue
机构
[1] University of Sheffield,Sheffield Institute for Translational Neuroscience (SITraN), Department of Neuroscience
[2] The Francis Crick Institute,Kinases and Brain Development Laboratory
[3] The Francis Crick Institute,Proteomics Science Technology Platform
[4] The Francis Crick Institute,Neural Stem Cell Biology Laboratory
[5] University of Sheffield,Department of Chemical and Biological Engineering, Sir Robert Hadfield Building
[6] University of Sheffield,Neuroscience Institute
[7] Western Bank,Bioinformatics and Biostatistics Science and Technology Platform
[8] The Francis Crick Institute,Healthy Lifespan Institute (HELSI)
[9] University of Sheffield,Life Science Mass Spectrometry
[10] Western Bank,undefined
[11] Bruker Daltonics,undefined
来源
关键词
D O I
暂无
中图分类号
学科分类号
摘要
PGC-1α plays a central role in maintaining mitochondrial and energy metabolism homeostasis, linking external stimuli to transcriptional co-activation of genes involved in adaptive and age-related pathways. The carboxyl-terminus encodes a serine/arginine-rich (RS) region and an RNA recognition motif, however the RNA-processing function(s) were poorly investigated over the past 20 years. Here, we show that the RS domain of human PGC-1α directly interacts with RNA and the nuclear RNA export receptor NXF1. Inducible depletion of PGC-1α and expression of RNAi-resistant RS-deleted PGC-1α further demonstrate that its RNA/NXF1-binding activity is required for the nuclear export of some canonical mitochondrial-related mRNAs and mitochondrial homeostasis. Genome-wide investigations reveal that the nuclear export function is not strictly linked to promoter-binding, identifying in turn novel regulatory targets of PGC-1α in non-homologous end-joining and nucleocytoplasmic transport. These findings provide new directions to further elucidate the roles of PGC-1α in gene expression, metabolic disorders, aging and neurodegeneration.
引用
收藏
相关论文
共 50 条
  • [1] The master energy homeostasis regulator PGC-1a exhibits an mRNA nuclear export function
    Mihaylov, Simeon R.
    Castelli, Lydia M.
    Lin, Ya-Hui
    Gul, Aytac
    Soni, Nikita
    Hastings, Christopher
    Flynn, Helen R.
    Paun, Oana
    Dickman, Mark J.
    Snijders, Ambrosius P.
    Goldstone, Robert
    Bandmann, Oliver
    Shelkovnikova, Tatyana A.
    Mortiboys, Heather
    Ultanir, Sila K.
    Hautbergue, Guillaume M.
    NATURE COMMUNICATIONS, 2023, 14 (01)
  • [2] PGC-1: a key regulator in bone homeostasis
    Haoling Chen
    Wenguo Fan
    Hongwen He
    Fang Huang
    Journal of Bone and Mineral Metabolism, 2022, 40 : 1 - 8
  • [3] PGC-1: a key regulator in bone homeostasis
    Chen, Haoling
    Fan, Wenguo
    He, Hongwen
    Huang, Fang
    JOURNAL OF BONE AND MINERAL METABOLISM, 2022, 40 (01) : 1 - 8
  • [4] CREB3 mediates the transcriptional regulation of PGC-1α, a master regulator of energy homeostasis and mitochondrial biogenesis
    Locke, Briana
    Campbell, Elena
    Lu, Ray
    FEBS LETTERS, 2024, 598 (14) : 1730 - 1739
  • [5] Targeting PGC-1α to energy homeostasis
    Wu, Zhidan
    Boss, Olivier
    EXPERT OPINION ON THERAPEUTIC TARGETS, 2007, 11 (10) : 1329 - 1338
  • [6] PGC-1α:: a key regulator of energy metabolism
    Liang, Huiyun
    Ward, Walter F.
    ADVANCES IN PHYSIOLOGY EDUCATION, 2006, 30 (04) : 145 - 151
  • [7] PGC-1 coactivators and the control of energy homeostasis
    Spiegelman, BM
    St Pierre, J
    Drori, S
    Uldry, M
    Lin, J
    Bachoo, R
    FASEB JOURNAL, 2006, 20 (04): : A455 - A455
  • [8] PGC-1α: a master gene that is hard to master
    Lindholm, Dan
    Eriksson, Ove
    Makela, Johanna
    Belluardo, Natale
    Korhonen, Laura
    CELLULAR AND MOLECULAR LIFE SCIENCES, 2012, 69 (15) : 2465 - 2468
  • [9] PGC-1α: a master gene that is hard to master
    Dan Lindholm
    Ove Eriksson
    Johanna Mäkelä
    Natale Belluardo
    Laura Korhonen
    Cellular and Molecular Life Sciences, 2012, 69 : 2465 - 2468
  • [10] Control of nutrient and energy homeostasis through the PGC-1 pathway
    Puigserver, Pere
    FASEB JOURNAL, 2007, 21 (05): : A153 - A153