Mitochondrial H2O2 release does not directly cause damage to chromosomal DNA

Author:

van Soest Daan M. K.ORCID,Polderman Paulien E.,den Toom Wytze T. F.ORCID,Keijer Janneke P.ORCID,van Roosmalen Markus J.ORCID,Leyten Tim M. F.,Lehmann JohannesORCID,Zwakenberg Susan,De Henau SashaORCID,van Boxtel RubenORCID,Burgering Boudewijn M. T.ORCID,Dansen Tobias B.ORCID

Abstract

AbstractReactive Oxygen Species (ROS) derived from mitochondrial respiration are frequently cited as a major source of chromosomal DNA mutations that contribute to cancer development and aging. However, experimental evidence showing that ROS released by mitochondria can directly damage nuclear DNA is largely lacking. In this study, we investigated the effects of H2O2 released by mitochondria or produced at the nucleosomes using a titratable chemogenetic approach. This enabled us to precisely investigate to what extent DNA damage occurs downstream of near- and supraphysiological amounts of localized H2O2. Nuclear H2O2 gives rise to DNA damage and mutations and a subsequent p53 dependent cell cycle arrest. Mitochondrial H2O2 release shows none of these effects, even at levels that are orders of magnitude higher than what mitochondria normally produce. We conclude that H2O2 released from mitochondria is unlikely to directly damage nuclear genomic DNA, limiting its contribution to oncogenic transformation and aging.

Funder

KWF Kankerbestrijding

Publisher

Springer Science and Business Media LLC

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