Back to Search Start Over

Romo1 is a mitochondrial nonselective cation channel with viroporin-like characteristics

Authors :
C. Justin Lee
Young Do Yoo
Deok Gyun You
Hye Ra Lee
Sun Wook Hwang
Gi Young Lee
Source :
The Journal of Cell Biology
Publication Year :
2017

Abstract

Romo1 regulates mitochondrial reactive oxygen species production and acts as an essential redox sensor in mitochondrial dynamics. Lee et al. demonstrate that Romo1 is a unique mitochondrial ion channel with viroporin-like characteristics that distinguish Romo1 from other known eukaryotic ion channels.<br />Reactive oxygen species (ROS) modulator 1 (Romo1) is a nuclear-encoded mitochondrial inner membrane protein known to regulate mitochondrial ROS production and to act as an essential redox sensor in mitochondrial dynamics. Although its physiological roles have been studied for a decade, the biophysical mechanisms that explain these activities of Romo1 are unclear. In this study, we report that Romo1 is a unique mitochondrial ion channel that differs from currently identified eukaryotic ion channels. Romo1 is a highly conserved protein with structural features of class II viroporins, which are virus-encoded nonselective cation channels. Indeed, Romo1 forms a nonselective cation channel with its amphipathic helical transmembrane domain necessary for pore-forming activity. Notably, channel activity was specifically inhibited by Fe2+ ions, an essential transition metal ion in ROS metabolism. Using structural bioinformatics, we designed an experimental data–guided structural model of Romo1 with a rational hexameric structure. We propose that Romo1 establishes a new category of viroporin-like nonselective cation channel in eukaryotes.<br />Graphical Abstract

Details

ISSN :
15408140
Volume :
217
Issue :
6
Database :
OpenAIRE
Journal :
The Journal of cell biology
Accession number :
edsair.doi.dedup.....64d68fcc8e7890cb96f70257cf157fd7