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Lamin A/C impairments cause mitochondrial dysfunction by attenuating PGC1 and the NAMPT-NAD+ pathway

Authors :
Maynard, Scott
Hall, Arnaldur
Galanos, Panagiotis
Rizza, Salvatore
Yamamoto, Tatsuro
Gram, Helena Hagner
Munk, Sebastian H.N.
Shoaib, Muhammad
Sørensen, Claus Storgaard
Bohr, Vilhelm A.
Lerdrup, Mads
Maya-Mendoza, Apolinar
Bartek, Jiri
Maynard, Scott
Hall, Arnaldur
Galanos, Panagiotis
Rizza, Salvatore
Yamamoto, Tatsuro
Gram, Helena Hagner
Munk, Sebastian H.N.
Shoaib, Muhammad
Sørensen, Claus Storgaard
Bohr, Vilhelm A.
Lerdrup, Mads
Maya-Mendoza, Apolinar
Bartek, Jiri
Source :
Maynard , S , Hall , A , Galanos , P , Rizza , S , Yamamoto , T , Gram , H H , Munk , S H N , Shoaib , M , Sørensen , C S , Bohr , V A , Lerdrup , M , Maya-Mendoza , A & Bartek , J 2022 , ' Lamin A/C impairments cause mitochondrial dysfunction by attenuating PGC1 and the NAMPT-NAD + pathway ' , Nucleic Acids Research , vol. 50 , no. 17 , pp. 9948-9965 .
Publication Year :
2022

Abstract

Mutations in the lamin A/C gene (LMNA) cause laminopathies such as the premature aging Hutchinson Gilford progeria syndrome (HGPS) and altered lamin A/C levels are found in diverse malignancies. The underlying lamin-associated mechanisms remain poorly understood. Here we report that lamin A/C-null mouse embryo fibroblasts (Lmna−/− MEFs) and human progerin-expressing HGPS fibroblasts both display reduced NAD+ levels, unstable mitochondrial DNA and attenuated bioenergetics. This mitochondrial dysfunction is associated with reduced chromatin recruitment (Lmna−/− MEFs) or low levels (HGPS) of PGC1, the key transcription factor for mitochondrial homeostasis. Lmna−/− MEFs showed reduced expression of the NAD+biosynthesis enzyme NAMPT and attenuated activity of the NAD+-dependent deacetylase SIRT1. We find high PARylation in lamin A/C-aberrant cells, further decreasing the NAD+ pool and consistent with impaired DNA base excision repair in both cell models, a condition that fuels DNA damage-induced PARylation under oxidative stress. Further, ATACsequencing revealed a substantially altered chromatin landscape in Lmna−/− MEFs, including aberrantly reduced accessibility at the Nampt gene promoter. Thus, we identified a new role of lamin A/C as a key modulator of mitochondrial function through impairments of PGC1 and the NAMPT-NAD+ pathway, with broader implications for the aging process.

Details

Database :
OAIster
Journal :
Maynard , S , Hall , A , Galanos , P , Rizza , S , Yamamoto , T , Gram , H H , Munk , S H N , Shoaib , M , Sørensen , C S , Bohr , V A , Lerdrup , M , Maya-Mendoza , A & Bartek , J 2022 , ' Lamin A/C impairments cause mitochondrial dysfunction by attenuating PGC1 and the NAMPT-NAD + pathway ' , Nucleic Acids Research , vol. 50 , no. 17 , pp. 9948-9965 .
Notes :
application/pdf, English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1382516780
Document Type :
Electronic Resource