Skip to content
Open access

Trypanosomal MICOS is assembled on non-respiring mitochondrial crista precursors and associates with two integral microproteins

Jul 2026 · bioRxiv · 1 citation · 78 references
Medicine Biology

TL;DR

It is demonstrated that all MICOS subunits assemble onto precursor cristae, retaining conserved interactions with both outer and inner membrane protein machineries, establishing that MICOS assembly precedes cellular respiratory competence and expand its interaction landscape in trypanosomatids.

Abstract

The mitochondrial contact site and cristae organizing system (MICOS) is a multiprotein complex that shapes crista junctions and maintains inner and outer membrane contacts. MICOS coordinates the assembly of electron transport chain complexes, a prerequisite for cellular respiration. Indeed, MICOS is lost in eukaryotes that dispensed with cellular respiration, suggesting that its assembly depends on the presence of an active respiratory chain. Trypanosoma brucei provides a unique system to test this hypothesis as its mitochondrion undergoes developmentally regulated remodeling. In the insect stage, the mitochondrion contains cristae with an active electron transport chain, whereas the mammalian bloodstream form possesses precursor cristae with stub-like morphology that lack respiratory activity. MICOS has been characterized in the insect stage but remains unexamined in the bloodstream form. Here, we demonstrate that all MICOS subunits assemble onto precursor cristae, retaining conserved interactions with both outer and inner membrane protein machineries. This is somewhat unexpected given the co-occurrence of MICOS with active cellular respiration in nature. Furthermore, we identify novel MICOS-associated proteins that are dispensable for its stability, suggesting auxiliary rather than core roles in MICOS function. Together, our findings establish that MICOS assembly precedes cellular respiratory competence and expand its interaction landscape in trypanosomatids.

Read PDF

Similar papers

Review Open access Aug 2026

The molecular mechanisms of crista formation: how mitochondria give themselves breathing room

The few knowns about crista formation in a handful of organisms are highlighted to guide research into the many unknowns about how complex subcompartments represented by mitochondrial cristae are formed.

Lilia Colina-Tenorio, Martina Bohuslavová, Alexander W. Bruce et al. · 0 citations
#diffusion models Open access Sep 2026

Integrative structural modelling reveals the human Mic60-Mic19 subcomplex as a diffusion barrier in mitochondria

Mitochondrial crista junctions (CJs) operate as regulated gateways into the cristae microenvironment, whose protein, metabolite, and ion compositions are finely tuned for mitochondrial function. The Mic60-Mic19 complex of the mitochondrial contact site and cristae organizing system (MICOS) complex was suggested to span...

Evangelia Nathanail, Edoardo Rolando, Max Ruwolt et al. · 0 citations
Review Open access Sep 2026

Evolution and Adaptation of the Mitochondrial Protein Import Machinery in Parasitic Protists: Beyond the Canonical TOM Complex

The translocase of the outer membrane (TOM) complex is the primary entry gate for nucleus-encoded mitochondrial proteins and is conserved across eukaryotes; however, parasitic protists exhibit remarkable adaptations. This review synthesizes current knowledge on the composition, structure, and function of TOM and relate...

E. Anvari, Gholamreza Daryabor, A. Sedigh et al. · 0 citations
Open access Aug 2026

A p32 family RNA editing factor acts in mitochondrial ribosome biogenesis

Biogenesis of mitochondrial ribosomes (mitoribosomes) in the unicellular parasite Trypanosoma brucei requires an exceptionally large toolkit of assembly factors, identified in stable precursors of large and small mitoribosomal subunits (mtLSU and mtSSU) by cryoEM. Here, using genetic modifications and proteomic charact...

Prashant Chauhan, Ingrid Sveráková-Škodová, J. T. Wong et al. · 0 citations
Open access Sep 2026

Interconnections with and within the trypanosomal respiratory chain revealed by complexome profiling

Proteins are frequently integrated into multicomponent complexes that execute the elaborate processes supporting life. Thus, a protein’s function can only be defined by the company it keeps within a complex. Proteomes provide informative protein inventories but lack information about protein quaternary structures. Comp...

Corinna Benz, R. Khan, Michael Hammond et al. · 0 citations
Aug 2026

Functional Reconstitution of Mitochondrial Respiratory Supercomplexes.

A simple, quick, and reproducible protocol for reconstituting respiratory SCs into liposomes that allows for testing the effects of varying lipid compositions, protein concentration, and membrane potential on the function of respiratory SCs, providing a valuable tool for future mechanistic studies.

A. Padavannil, Pei-Yi Liu, J. Letts · 0 citations

We use cookies to run the site and, with your consent, for analytics and to show ads. See our Cookie Policy.