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A Novel Group of Dynamin-Related Proteins Shared by Eukaryotes and Giant Viruses Is Able to Remodel Mitochondria From Within the Matrix.
Sheikh, Shaghayegh; Pánek, Tomás; Gahura, Ondrej; Týc, Jirí; Záhonová, Kristína; Lukes, Julius; Eliás, Marek; Hashimi, Hassan.
Afiliación
  • Sheikh S; Institute of Parasitology, Biology Centre, Czech Academy of Sciences, Ceské Budejovice, Czech Republic.
  • Pánek T; Faculty of Science, University of South Bohemia, Ceské Budejovice, Czech Republic.
  • Gahura O; Department of Zoology, Faculty of Science, Charles University, Prague, Czech Republic.
  • Týc J; Institute of Parasitology, Biology Centre, Czech Academy of Sciences, Ceské Budejovice, Czech Republic.
  • Záhonová K; Institute of Parasitology, Biology Centre, Czech Academy of Sciences, Ceské Budejovice, Czech Republic.
  • Lukes J; Institute of Parasitology, Biology Centre, Czech Academy of Sciences, Ceské Budejovice, Czech Republic.
  • Eliás M; Department of Parasitology, Faculty of Science, Charles University, BIOCEV, Vestec, Czech Republic.
  • Hashimi H; Department of Biology and Ecology, Faculty of Science, University of Ostrava, Ostrava, Czech Republic.
Mol Biol Evol ; 40(6)2023 06 01.
Article en En | MEDLINE | ID: mdl-37279941
ABSTRACT
The diverse GTPases of the dynamin superfamily play various roles in the cell, as exemplified by the dynamin-related proteins (DRPs) Mgm1 and Opa1, which remodel the mitochondrial inner membrane in fungi and metazoans, respectively. Via an exhaustive search of genomic and metagenomic databases, we found previously unknown DRP types occurring in diverse eukaryotes and giant viruses (phylum Nucleocytoviricota). One novel DRP clade, termed MidX, combined hitherto uncharacterized proteins from giant viruses and six distantly related eukaryote taxa (Stramenopiles, Telonemia, Picozoa, Amoebozoa, Apusomonadida, and Choanoflagellata). MidX stood out because it was not only predicted to be mitochondria-targeted but also to assume a tertiary structure not observed in other DRPs before. To understand how MidX affects mitochondria, we exogenously expressed MidX from Hyperionvirus in the kinetoplastid Trypanosoma brucei, which lacks Mgm1 or Opa1 orthologs. MidX massively affected mitochondrial morphology from inside the matrix, where it closely associates with the inner membrane. This unprecedented mode of action contrasts to those of Mgm1 and Opa1, which mediate inner membrane remodeling in the intermembrane space. We speculate that MidX was acquired in Nucleocytoviricota evolution by horizontal gene transfer from eukaryotes and is used by giant viruses to remodel host mitochondria during infection. MidX's unique structure may be an adaptation for reshaping mitochondria from the inside. Finally, Mgm1 forms a sister group to MidX and not Opa1 in our phylogenetic analysis, throwing into question the long-presumed homology of these DRPs with similar roles in sister lineages.
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Texto completo: 1 Bases de datos: MEDLINE Asunto principal: Virus Gigantes Idioma: En Revista: Mol Biol Evol Asunto de la revista: BIOLOGIA MOLECULAR Año: 2023 Tipo del documento: Article País de afiliación: República Checa

Texto completo: 1 Bases de datos: MEDLINE Asunto principal: Virus Gigantes Idioma: En Revista: Mol Biol Evol Asunto de la revista: BIOLOGIA MOLECULAR Año: 2023 Tipo del documento: Article País de afiliación: República Checa