Complexome profiling of mitochondria in the myzozoan parasite of oysters, Perkinsus marinus

Mitochondrial complexes, such as the mitochondrial electron transport chain (mETC), the F 1 F o -ATP synthase, the mitochondrial ribosome and the Translocase of the Outer Membrane (TOM) complex are centrally important for mitochondrial function and cell survival. Recently, an unexpected diversity in the composition of these complexes across unicellular eukaryotic lineages, with the apicomplexan parasites featuring prominently, has been revealed. However, whether the observed enlarged and divergent mitochondrial complexes are conserved across the wider lineages has not been investigated. Here, using a complexome profiling proteomic approach, we have characterised the composition of the mitochondrial complexes of the myzozoan parasite of oysters, Perkinsus marinus . We show that it shares new components of ATP synthase and the mETC complexes that in the deadly apicomplexan Plasmodium and Toxoplasma were shown to be important for growth. Moreover, the Perkinsus mitoribosome possesses many of the divergent features recently discovered in apicomplexans, including members of the ApiAP2 family that until recently were all considered to be transcription factors. Our study reveals that the divergent subunit composition of mitochondrial complexes is an ancestral and highly conserved feature of Myzozoa.

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Journal
PLoS Pathogens
Published
2026-09-29
DOI
https://doi.org/10.1371/journal.ppat.1014543
Primary Topic
Protist diversity and phylogeny
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article
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article

Complexome profiling of mitochondria in the myzozoan parasite of oysters, Perkinsus marinus

Lilach Sheiner, Suzanne McGill, Andrew E. Maclean, Drahomíra Faktorová et al.
PLoS Pathogens
Protist diversity and phylogeny
article

Complexome profiling of mitochondria in the myzozoan parasite of oysters, Perkinsus marinus

Lilach Sheiner, Suzanne McGill, Andrew E. Maclean, Drahomíra Faktorová, Julius Lukeš, Monika Singh, Orsola Iorillo
article en

Abstract

Mitochondrial complexes, such as the mitochondrial electron transport chain (mETC), the F 1 F o -ATP synthase, the mitochondrial ribosome and the Translocase of the Outer Membrane (TOM) complex are centrally important for mitochondrial function and cell survival. Recently, an unexpected diversity in the composition of these complexes across unicellular eukaryotic lineages, with the apicomplexan parasites featuring prominently, has been revealed. However, whether the observed enlarged and divergent mitochondrial complexes are conserved across the wider lineages has not been investigated. Here, using a complexome profiling proteomic approach, we have characterised the composition of the mitochondrial complexes of the myzozoan parasite of oysters, Perkinsus marinus . We show that it shares new components of ATP synthase and the mETC complexes that in the deadly apicomplexan Plasmodium and Toxoplasma were shown to be important for growth. Moreover, the Perkinsus mitoribosome possesses many of the divergent features recently discovered in apicomplexans, including members of the ApiAP2 family that until recently were all considered to be transcription factors. Our study reveals that the divergent subunit composition of mitochondrial complexes is an ancestral and highly conserved feature of Myzozoa.

PLoS PathogensVol. 22(9)
Czech Academy of Sciences (CZ), University of South Bohemia in České Budějovice (CZ), University of Glasgow (GB), University of Edinburgh (GB)
Life below water
Openalex Percentile: Top 20%
Protist diversity and phylogeny
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Complexome profiling of mitochondria in the myzozoan parasite of oysters, Perkinsus marinus — Lilach Sheiner, Suzanne McGill, et al. · PLoS Pathogens (2026) | TGRS Research Map | TGRS