Mitochondrial membrane hyperpolarization modulates nuclear DNA methylation and gene expression through phospholipid remodeling

M Mateus Prates Mori O Oswaldo A. Lozoya A Ashley M. Brooks C Carl D. Bortner C Cristina A. Nadalutti B Birgitta Ryback B Brittany P. Rickard M Marta Overchuk I Imran Rizvi T Tatiana Rogasevskaia K Kai Ting Huang P Prottoy Hasan (Department of Cell Biology, Neurobiology, and Anatomy, Medical College of Wisconsin) G György Hajnóczky J Janine H. Santos

Abstract

Abstract Maintenance of the mitochondrial inner membrane potential (ΔΨm) is critical for many aspects of mitochondrial function. While ΔΨm loss and its consequences are well studied, little is known about the effects of mitochondrial hyperpolarization. In this study, we used cells deleted of ATP5IF1 (IF1), a natural inhibitor of the hydrolytic activity of the ATP synthase, as a genetic model of increased resting ΔΨm. We found that the nuclear DNA hypermethylates when the ΔΨm is chronically high, regulating the transcription of mitochondrial, carbohydrate and lipid genes. These effects can be reversed by decreasing the ΔΨm and recapitulated in wild-type (WT) cells exposed to environmental chemicals that cause hyperpolarization. Surprisingly, phospholipid changes, but not redox or metabolic alterations, linked the ΔΨm to the epigenome. Sorted hyperpolarized WT and ovarian cancer cells naturally depleted of IF1 also showed phospholipid remodeling, indicating this as an adaptation to mitochondrial hyperpolarization. These data provide a new framework for how mitochondria can impact epigenetics and cellular biology to influence health outcomes, including through chemical exposures and in disease states.

Article Details

Volume / Issue Vol. 16, Issue 1
Published April 29, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (14)

M

Mateus Prates Mori

O

Oswaldo A. Lozoya

A

Ashley M. Brooks

C

Carl D. Bortner

C

Cristina A. Nadalutti

B

Birgitta Ryback

B

Brittany P. Rickard

M

Marta Overchuk

I

Imran Rizvi

T

Tatiana Rogasevskaia

K

Kai Ting Huang

P

Prottoy Hasan

Department of Cell Biology, Neurobiology, and Anatomy, Medical College of Wisconsin

G

György Hajnóczky

J

Janine H. Santos