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The minimal kinome of Giardia lamblia illuminates early kinase evolution and unique parasite biology

BACKGROUND: The major human intestinal pathogen Giardia lamblia is a very early branching eukaryote with a minimal genome of broad evolutionary and biological interest. RESULTS: To explore early kinase evolution and regulation of Giardia biology, we cataloged the kinomes of three sequenced strains....

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Autores principales: Manning, Gerard, Reiner, David S, Lauwaet, Tineke, Dacre, Michael, Smith, Alias, Zhai, Yufeng, Svard, Staffan, Gillin, Frances D
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3218828/
https://www.ncbi.nlm.nih.gov/pubmed/21787419
http://dx.doi.org/10.1186/gb-2011-12-7-r66
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author Manning, Gerard
Reiner, David S
Lauwaet, Tineke
Dacre, Michael
Smith, Alias
Zhai, Yufeng
Svard, Staffan
Gillin, Frances D
author_facet Manning, Gerard
Reiner, David S
Lauwaet, Tineke
Dacre, Michael
Smith, Alias
Zhai, Yufeng
Svard, Staffan
Gillin, Frances D
author_sort Manning, Gerard
collection PubMed
description BACKGROUND: The major human intestinal pathogen Giardia lamblia is a very early branching eukaryote with a minimal genome of broad evolutionary and biological interest. RESULTS: To explore early kinase evolution and regulation of Giardia biology, we cataloged the kinomes of three sequenced strains. Comparison with published kinomes and those of the excavates Trichomonas vaginalis and Leishmania major shows that Giardia's 80 core kinases constitute the smallest known core kinome of any eukaryote that can be grown in pure culture, reflecting both its early origin and secondary gene loss. Kinase losses in DNA repair, mitochondrial function, transcription, splicing, and stress response reflect this reduced genome, while the presence of other kinases helps define the kinome of the last common eukaryotic ancestor. Immunofluorescence analysis shows abundant phospho-staining in trophozoites, with phosphotyrosine abundant in the nuclei and phosphothreonine and phosphoserine in distinct cytoskeletal organelles. The Nek kinase family has been massively expanded, accounting for 198 of the 278 protein kinases in Giardia. Most Neks are catalytically inactive, have very divergent sequences and undergo extensive duplication and loss between strains. Many Neks are highly induced during development. We localized four catalytically active Neks to distinct parts of the cytoskeleton and one inactive Nek to the cytoplasm. CONCLUSIONS: The reduced kinome of Giardia sheds new light on early kinase evolution, and its highly divergent sequences add to the definition of individual kinase families as well as offering specific drug targets. Giardia's massive Nek expansion may reflect its distinctive lifestyle, biphasic life cycle and complex cytoskeleton.
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spelling pubmed-32188282011-11-18 The minimal kinome of Giardia lamblia illuminates early kinase evolution and unique parasite biology Manning, Gerard Reiner, David S Lauwaet, Tineke Dacre, Michael Smith, Alias Zhai, Yufeng Svard, Staffan Gillin, Frances D Genome Biol Research BACKGROUND: The major human intestinal pathogen Giardia lamblia is a very early branching eukaryote with a minimal genome of broad evolutionary and biological interest. RESULTS: To explore early kinase evolution and regulation of Giardia biology, we cataloged the kinomes of three sequenced strains. Comparison with published kinomes and those of the excavates Trichomonas vaginalis and Leishmania major shows that Giardia's 80 core kinases constitute the smallest known core kinome of any eukaryote that can be grown in pure culture, reflecting both its early origin and secondary gene loss. Kinase losses in DNA repair, mitochondrial function, transcription, splicing, and stress response reflect this reduced genome, while the presence of other kinases helps define the kinome of the last common eukaryotic ancestor. Immunofluorescence analysis shows abundant phospho-staining in trophozoites, with phosphotyrosine abundant in the nuclei and phosphothreonine and phosphoserine in distinct cytoskeletal organelles. The Nek kinase family has been massively expanded, accounting for 198 of the 278 protein kinases in Giardia. Most Neks are catalytically inactive, have very divergent sequences and undergo extensive duplication and loss between strains. Many Neks are highly induced during development. We localized four catalytically active Neks to distinct parts of the cytoskeleton and one inactive Nek to the cytoplasm. CONCLUSIONS: The reduced kinome of Giardia sheds new light on early kinase evolution, and its highly divergent sequences add to the definition of individual kinase families as well as offering specific drug targets. Giardia's massive Nek expansion may reflect its distinctive lifestyle, biphasic life cycle and complex cytoskeleton. BioMed Central 2011 2011-07-25 /pmc/articles/PMC3218828/ /pubmed/21787419 http://dx.doi.org/10.1186/gb-2011-12-7-r66 Text en Copyright ©2011 Manning et al.; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research
Manning, Gerard
Reiner, David S
Lauwaet, Tineke
Dacre, Michael
Smith, Alias
Zhai, Yufeng
Svard, Staffan
Gillin, Frances D
The minimal kinome of Giardia lamblia illuminates early kinase evolution and unique parasite biology
title The minimal kinome of Giardia lamblia illuminates early kinase evolution and unique parasite biology
title_full The minimal kinome of Giardia lamblia illuminates early kinase evolution and unique parasite biology
title_fullStr The minimal kinome of Giardia lamblia illuminates early kinase evolution and unique parasite biology
title_full_unstemmed The minimal kinome of Giardia lamblia illuminates early kinase evolution and unique parasite biology
title_short The minimal kinome of Giardia lamblia illuminates early kinase evolution and unique parasite biology
title_sort minimal kinome of giardia lamblia illuminates early kinase evolution and unique parasite biology
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3218828/
https://www.ncbi.nlm.nih.gov/pubmed/21787419
http://dx.doi.org/10.1186/gb-2011-12-7-r66
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