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PMID: 16505385 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

New insights into myosin evolution and classification.

Foth BJ, Goedecke MC, Soldati D

Abstract

Myosins are eukaryotic actin-dependent molecular motors important for a broad range of functions like muscle contraction, vision, hearing, cell motility, and host cell invasion of apicomplexan parasites. Myosin heavy chains consist of distinct head, neck, and tail domains and have previously been categorized into 18 different classes based on phylogenetic analysis of their conserved heads. Here we describe a comprehensive phylogenetic examination of many previously unclassified myosins, with particular emphasis on sequences from apicomplexan and other chromalveolate protists including the model organism Toxoplasma, the malaria parasite Plasmodium, and the ciliate Tetrahymena. Using different phylogenetic inference methods and taking protein domain architectures, specific amino acid polymorphisms, and organismal distribution into account, we demonstrate a hitherto unrecognized common origin for ciliate and apicomplexan class XIV myosins. Our data also suggest common origins for some apicomplexan myosins and class VI, for classes II and XVIII, for classes XII and XV, and for some microsporidian myosins and class V, thereby reconciling evolutionary history and myosin structure in several cases and corroborating the common coevolution of myosin head, neck, and tail domains. Six novel myosin classes are established to accommodate sequences from chordate metazoans (class XIX), insects (class XX), kinetoplastids (class XXI), and apicomplexans and diatom algae (classes XXII, XXIII, and XXIV). These myosin (sub)classes include sequences with protein domains (FYVE, WW, UBA, ATS1-like, and WD40) previously unknown to be associated with myosin motors. Regarding the apicomplexan "myosome," we significantly update class XIV classification, propose a systematic naming convention, and discuss possible functions in these parasites.

MeSH Terms
Animals Apicomplexa/chemistry,genetics Chordata Ciliophora/chemistry,genetics Evolution, Molecular Insecta/chemistry,genetics Kinetoplastida/chemistry,genetics Microsporidia/chemistry,genetics Models, Genetic Molecular Sequence Data Myosins/chemistry,classification,genetics Phylogeny Plasmodium/chemistry,genetics
Chemicals
Myosins
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Foth Bernardo J
Department of Microbiology and Molecular Medicine, Centre Médical Universitaire, University of Geneva, 1 Rue Michel-Servet, 1211 Geneva, Switzerland. bernardo.foth@medecine.unige.ch
Goedecke Marc C
Soldati Dominique
References (46)
46 references, click to expand
  1. The molecular motor toolbox for intracellular transport.
    Cell. 2003 Feb 21;112(4):467-80 PMID: 12600311
  2. Myosin genes in Tetrahymena.
    Cell Motil Cytoskeleton. 2005 Aug;61(4):237-43 PMID: 15988740
  3. Saccharomyces cerevisiae Ats1p interacts with Nap1p, a cytoplasmic protein that controls bud morphogenesis.
    Curr Genet. 2003 Dec;44(4):184-94 PMID: 13680156
  4. Plasmodium biology: genomic gleanings.
    Cell. 2003 Dec 26;115(7):771-85 PMID: 14697197
  5. Toxoplasma as a novel system for motility.
    Curr Opin Cell Biol. 2004 Feb;16(1):32-40 PMID: 15037302
  6. Actin and myosin in Gregarina polymorpha.
    Cell Motil Cytoskeleton. 2004 Jun;58(2):83-95 PMID: 15083530
  7. Phosphorylation regulates the dynamic interaction of RCC1 with chromosomes during mitosis.
    Curr Biol. 2004 Jun 22;14(12):1099-104 PMID: 15203004
  8. Analysis of the compositional biases in Plasmodium falciparum genome and proteome using Arabidopsis thaliana as a reference.
    Gene. 2004 Jul 21;336(2):163-73 PMID: 15246528
  9. A microtubule-binding myosin required for nuclear anchoring and spindle assembly.
    Nature. 2004 Sep 16;431(7006):325-9 PMID: 15372037
  10. Myosin VI: cellular functions and motor properties.
    Annu Rev Cell Dev Biol. 2004;20:649-76 PMID: 15473855
  11. The genome sequence of Trypanosoma cruzi, etiologic agent of Chagas disease.
    Science. 2005 Jul 15;309(5733):409-15 PMID: 16020725
  12. Multiple sequence alignment with the Clustal series of programs.
    Nucleic Acids Res. 2003 Jul 1;31(13):3497-500 PMID: 12824352
  13. Myosins: a diverse superfamily.
    Biochim Biophys Acta. 2000 Mar 17;1496(1):3-22 PMID: 10722873
  14. A dibasic motif in the tail of a class XIV apicomplexan myosin is an essential determinant of plasma membrane localization.
    Mol Biol Cell. 2000 Apr;11(4):1385-400 PMID: 10749937
  15. A myosin family tree.
    J Cell Sci. 2000 Oct;113 Pt 19:3353-4 PMID: 10984423
  16. Coevolution of head, neck, and tail domains of myosin heavy chains.
    Proc Natl Acad Sci U S A. 2000 Nov 7;97(23):12559-64 PMID: 11058170
  17. MYO1, a novel, unconventional myosin gene affects endocytosis and macronuclear elongation in Tetrahymena thermophila.
    J Eukaryot Microbiol. 2000 Nov-Dec;47(6):561-8 PMID: 11128708
  18. Identification of the class XIV myosins Pb-MyoA and Py-MyoA and expression in Plasmodium sporozoites.
    Mol Biochem Parasitol. 2001 Jan 15;112(1):157-61 PMID: 11166399
  19. A millennial myosin census.
    Mol Biol Cell. 2001 Apr;12(4):780-94 PMID: 11294886
  20. Myosin diversity in Apicomplexa.
    J Parasitol. 2001 Apr;87(2):429-32 PMID: 11318578
  21. Myosin-VIIb, a novel unconventional myosin, is a constituent of microvilli in transporting epithelia.
    Genomics. 2001 Mar 15;72(3):285-96 PMID: 11401444
  22. MRBAYES: Bayesian inference of phylogenetic trees.
    Bioinformatics. 2001 Aug;17(8):754-5 PMID: 11524383
  23. Toxoplasma gondii myosins B/C: one gene, two tails, two localizations, and a role in parasite division.
    J Cell Biol. 2001 Nov 12;155(4):613-23 PMID: 11706051
  24. TREE-PUZZLE: maximum likelihood phylogenetic analysis using quartets and parallel computing.
    Bioinformatics. 2002 Mar;18(3):502-4 PMID: 11934758
  25. Toxoplasma gondii myosin A and its light chain: a fast, single-headed, plus-end-directed motor.
    EMBO J. 2002 May 1;21(9):2149-58 PMID: 11980712
  26. Identification and phylogenetic analysis of Drosophila melanogaster myosins.
    Mol Biol Evol. 2002 Jul;19(7):1041-52 PMID: 12082124
  27. Myosins of Babesia bovis: molecular characterisation, erythrocyte invasion, and phylogeny.
    Cell Motil Cytoskeleton. 2002 Aug;52(4):202-20 PMID: 12112135
  28. Myosin superfamily evolutionary history.
    Anat Rec. 2002 Nov 1;268(3):276-89 PMID: 12382324
  29. Role of Toxoplasma gondii myosin A in powering parasite gliding and host cell invasion.
    Science. 2002 Oct 25;298(5594):837-40 PMID: 12399593
  30. The single, ancient origin of chromist plastids.
    Proc Natl Acad Sci U S A. 2002 Nov 26;99(24):15507-12 PMID: 12438651
  31. Myosin domain evolution and the primary divergence of eukaryotes.
    Nature. 2005 Aug 25;436(7054):1113-8 PMID: 16121172
  32. The new higher level classification of eukaryotes with emphasis on the taxonomy of protists.
    J Eukaryot Microbiol. 2005 Sep-Oct;52(5):399-451 PMID: 16248873
  33. Functional and biophysical analyses of the class XIV Toxoplasma gondii myosin D.
    J Muscle Res Cell Motil. 2006;27(2):139-51 PMID: 16470333
  34. Principles of protein and lipid targeting in secondary symbiogenesis: euglenoid, dinoflagellate, and sporozoan plastid origins and the eukaryote family tree.
    J Eukaryot Microbiol. 1999 Jul-Aug;46(4):347-66 PMID: 18092388
  35. Kingdom protozoa and its 18 phyla.
    Microbiol Rev. 1993 Dec;57(4):953-94 PMID: 8302218
  36. Overexpression of yeast homologs of the mammalian checkpoint gene RCC1 suppresses the class of alpha-tubulin mutations that arrest with excess microtubules.
    Genetics. 1994 Jun;137(2):381-92 PMID: 8070652
  37. A novel class of unconventional myosins from Toxoplasma gondii.
    J Mol Biol. 1997 Aug 8;271(1):139-46 PMID: 9300060
  38. The WD repeat: a common architecture for diverse functions.
    Trends Biochem Sci. 1999 May;24(5):181-5 PMID: 10322433
  39. Myosin VI is an actin-based motor that moves backwards.
    Nature. 1999 Sep 30;401(6752):505-8 PMID: 10519557
  40. Molecular and functional aspects of parasite invasion.
    Trends Parasitol. 2004 Dec;20(12):567-74 PMID: 15522666
  41. Simplicity and complexity of microsporidian genomes.
    Eukaryot Cell. 2004 Dec;3(6):1363-9 PMID: 15590811
  42. On the monophyly of chromalveolates using a six-protein phylogeny of eukaryotes.
    Int J Syst Evol Microbiol. 2005 Jan;55(Pt 1):487-96 PMID: 15653923
  43. Plasmodium falciparum myosins: transcription and translation during asexual parasite development.
    Cell Motil Cytoskeleton. 2005 Apr;60(4):200-13 PMID: 15754360
  44. Directed motility of phagosomes in Tetrahymena thermophila requires actin and Myo1p, a novel unconventional myosin.
    Cell Motil Cytoskeleton. 2005 May;61(1):49-60 PMID: 15810016
  45. Subcellular recruitment by TSG118 and TSPYL implicates a role for zinc finger protein 106 in a novel developmental pathway.
    Int J Biochem Cell Biol. 2005 Jul;37(7):1421-37 PMID: 15833274
  46. The structure of the myosin VI motor reveals the mechanism of directionality reversal.
    Nature. 2005 Jun 9;435(7043):779-85 PMID: 15944696
Article Info
Journal
Proceedings of the National Academy of Sciences of the United States of America
Abbr.
Proc Natl Acad Sci U S A
ISSN
0027-8424
Published
2006-03-07
Epub
2006-00-27
Pages
3681-6
Language
English
Region
United States
NLM ID
7505876
PMCID
PMC1533776
Subset
IM
Grants
Wellcome Trust · United Kingdom
Databases
GENBANK
DQ131540, DQ131541
Corrections
CommentIn
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