Literature DB >> 23312067

Alternative cytoskeletal landscapes: cytoskeletal novelty and evolution in basal excavate protists.

Scott C Dawson1, Alexander R Paredez.   

Abstract

Microbial eukaryotes encompass the majority of eukaryotic evolutionary and cytoskeletal diversity. The cytoskeletal complexity observed in multicellular organisms appears to be an expansion of components present in genomes of diverse microbial eukaryotes such as the basal lineage of flagellates, the Excavata. Excavate protists have complex and diverse cytoskeletal architectures and life cycles-essentially alternative cytoskeletal 'landscapes'-yet still possess conserved microtubule-associated and actin-associated proteins. Comparative genomic analyses have revealed that a subset of excavates, however, lack many canonical actin-binding proteins central to actin cytoskeleton function in other eukaryotes. Overall, excavates possess numerous uncharacterized and 'hypothetical' genes, and may represent an undiscovered reservoir of novel cytoskeletal genes and cytoskeletal mechanisms. The continued development of molecular genetic tools in these complex microbial eukaryotes will undoubtedly contribute to our overall understanding of cytoskeletal diversity and evolution.
Copyright © 2012 Elsevier Ltd. All rights reserved.

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Year:  2013        PMID: 23312067      PMCID: PMC4927265          DOI: 10.1016/j.ceb.2012.11.005

Source DB:  PubMed          Journal:  Curr Opin Cell Biol        ISSN: 0955-0674            Impact factor:   8.382


  67 in total

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5.  A "holistic" kinesin phylogeny reveals new kinesin families and predicts protein functions.

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Authors:  Vladimir Hampl; Laura Hug; Jessica W Leigh; Joel B Dacks; B Franz Lang; Alastair G B Simpson; Andrew J Roger
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Review 9.  The evolution of the cytoskeleton.

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  12 in total

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Authors:  Christopher Nosala; Kari D Hagen; Nicholas Hilton; Tiffany M Chase; Kelci Jones; Rita Loudermilk; Kristofer Nguyen; Scott C Dawson
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Review 2.  Origin and evolution of the self-organizing cytoskeleton in the network of eukaryotic organelles.

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3.  Identification of obscure yet conserved actin-associated proteins in Giardia lamblia.

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Journal:  Eukaryot Cell       Date:  2014-04-11

Review 4.  Microtubule organelles in Giardia.

Authors:  Kari D Hagen; Shane G McInally; Nicholas D Hilton; Scott C Dawson
Journal:  Adv Parasitol       Date:  2020-02-05       Impact factor: 3.870

Review 5.  Mitosis, microtubule dynamics and the evolution of kinesins.

Authors:  Juan Jesus Vicente; Linda Wordeman
Journal:  Exp Cell Res       Date:  2015-02-20       Impact factor: 3.905

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9.  Disc and Actin Associated Protein 1 influences attachment in the intestinal parasite Giardia lamblia.

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10.  Identification of Actin Filament-Associated Proteins in Giardia lamblia.

Authors:  Melissa C Steele-Ogus; Richard S Johnson; Michael J MacCoss; Alexander R Paredez
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