Back

TbTim20 facilitates protein import at a low membrane potential in trypanosomes lacking the mitochondrial genome

von Känel, C.; Aeschlimann, S.; Husova, M.; Oeljeklaus, S.; Stettler, P.; Schnaufer, A.; Warscheid, B.; Zikova, A.; Schneider, A.

2025-04-27 biochemistry
10.1101/2025.04.25.650624 bioRxiv
Show abstract

Protein import across the mitochondrial inner membrane typically depends on two protein translocases of the inner membrane (TIM) complexes and the membrane potential. The protozoan parasite Trypanosoma brucei, however, has a single, divergent TIM complex. Unlike other trypanosomal TIM subunits, TbTim20 is neither essential for normal growth of insect nor bloodstream forms of T. brucei, leaving its role uncertain. Specific mutations in the {gamma}-subunit of the F1FO-ATPase, such as {gamma}L262P, permit bloodstream form trypanosomes to grow without mitochondrial DNA (kinetoplast or kDNA). Here we show that RNAi-mediated depletion of TbTim20 inhibits growth of this cell line, but only if it lacks the kDNA. Titration of mitochondrial uncouplers and direct membrane potential measurements reveal that TbTim20 becomes more critical as the membrane potential decreases across all tested cell lines. Proteomic analysis of the uninduced and induced {gamma}L262P TbTim20-RNAi cell line, which lacks kDNA and exhibits the lowest membrane potential, shows depletion of a subset of imported proteins. This subset includes ATPase subunits, suggesting a mechanism by which TbTim20-silenced cell lines become more sensitive to uncouplers. Thus, we propose that TbTim20 supports import of a subset of proteins whose import is hypersensitive to a low membrane potential.

Published in The FEBS Journal (predicted rank #24) · training set

Matching journals

The top 4 journals account for 50% of the predicted probability mass.

50% of probability mass above

"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.