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PMID: 16121172 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Myosin domain evolution and the primary divergence of eukaryotes.

Nature ·Vol. 436 ·No. 7054 ·2005-08-25 ·Pages 1113-8

Richards TA, Cavalier-Smith T

Abstract

Eukaryotic cells have two contrasting cytoskeletal and ciliary organizations. The simplest involves a single cilium-bearing centriole, nucleating a cone of individual microtubules (probably ancestral for unikonts: animals, fungi, Choanozoa and Amoebozoa). In contrast, bikonts (plants, chromists and all other protozoa) were ancestrally biciliate with a younger anterior cilium, converted every cell cycle into a dissimilar posterior cilium and multiple ciliary roots of microtubule bands. Here we show by comparative genomic analysis that this fundamental cellular dichotomy also involves different myosin molecular motors. We found 37 different protein domain combinations, often lineage-specific, and many previously unidentified. The sequence phylogeny and taxonomic distribution of myosin domain combinations identified five innovations that strongly support unikont monophyly and the primary bikont/unikont bifurcation. We conclude that the eukaryotic cenancestor (last common ancestor) had a cilium, mitochondria, pseudopodia, and myosins with three contrasting domain combinations and putative functions.

MeSH Terms
Animals Bayes Theorem Classification Computational Biology Eukaryotic Cells/chemistry,classification,cytology,metabolism Evolution, Molecular Genomics Humans Myosins/chemistry,classification,genetics Phylogeny Protein Structure, Tertiary Sequence Alignment
Chemicals
Myosins
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Richards Thomas A
Department of Zoology, The Natural History Museum, Cromwell Road, London SW7 5BD, UK. thomr@nhm.ac.uk
Cavalier-Smith Thomas
Article Info
Journal
Nature
Abbr.
Nature
ISSN
1476-4687
Published
2005-08-25
Pages
1113-8
Language
English
Region
England
NLM ID
0410462
Subset
IM
Corrections
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