Proteolytic processing of the unique F1-ATPase subunit α in procyclic Trypanosoma brucei

J Jain Minal P Panicucci Brian Šubrtová Karolína S Schnaufer Achim Z Zíková Alena

Abstract

Abstract The catalytic F 1 domain of the mitochondrial ATP synthase is conserved across eukaryotes, with the only known exceptions found within euglenozoans. One distinctive trait identified in Trypanosoma brucei is the proteolysis of subunit α that excises an internal octapeptide, resulting in functional N- and C-terminal polypeptides. The significance of this cleavage remained unclear. Here, we determined that the yeast subunit α expressed in T. brucei was not proteolytically processed, despite significant structural similarities. The proteolytic recognition sequence was identified to be largely contained within the octapeptide and replacing it with a flexible linker rendered the protein resistant to cleavage. This uncleaved subunit α restored growth after RNAi depletion of endogenous subunit α by incorporating into F 1 F o -ATP synthase complexes capable of both ATP synthesis and hydrolysis. A FRET-based assay revealed that peptides consisting of either the first or second octapeptide cleavage site experienced significantly more proteolysis when incubated with cytosolic lysates compared to mitochondrial extracts. Furthermore, expressing just the mature C-terminal polypeptide resulted in mitochondrial localization, suggesting it contains an internal targeting signal. Together, these results indicate that proteolysis of subunit α occurs in the cytosol prior to mitochondrial import, highlighting a unique processing step in T. brucei ATP synthase assembly.

Article Details

Volume / Issue Vol. 1, Issue 1
Published April 28, 2026
ISSN 2045-2322
Publisher Nature Portfolio

Journal Info

Scientific Reports

Nature Portfolio

ISSN: 2045-2322 Open Access Life Sciences

Authors (5)

J

Jain Minal

P

Panicucci Brian

Šubrtová Karolína

S

Schnaufer Achim

Z

Zíková Alena