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author Braun, Burkhard R
van het Hoog, Marco
d'Enfert, Christophe
Martchenko, Mikhail
Dungan, Jan
Kuo, Alan
Inglis, Diane O
Uhl, M. Andrew
Hogues, Hervé
Berriman, Matthew
Lorenz, Michael
Levitin, Anastasia
Oberholzer, Ursula
Bachewich, Catherine
Harcus, Doreen
Marcil, Anne
Dignard, Daniel
Iouk, Tatiana
Zito, Rosa
Frangeul, Lionel
Tekaia, Fredj
Rutherford, Kim
Wang, Edwin
Munro, Carol A
Bates, Steve
Gow, Neil A
Hoyer, Lois L
Köhler, Gerwald
Morschhäuser, Joachim
Newport, George
Znaidi, Sadri
Raymond, Martine
Turcotte, Bernard
Sherlock, Gavin
Costanzo, Maria
Ihmels, Jan
Berman, Judith
Sanglard, Dominique
Agabian, Nina
Mitchell, Aaron P
Johnson, Alexander D
Whiteway, Malcolm
Nantel, André
author_facet Braun, Burkhard R
van het Hoog, Marco
d'Enfert, Christophe
Martchenko, Mikhail
Dungan, Jan
Kuo, Alan
Inglis, Diane O
Uhl, M. Andrew
Hogues, Hervé
Berriman, Matthew
Lorenz, Michael
Levitin, Anastasia
Oberholzer, Ursula
Bachewich, Catherine
Harcus, Doreen
Marcil, Anne
Dignard, Daniel
Iouk, Tatiana
Zito, Rosa
Frangeul, Lionel
Tekaia, Fredj
Rutherford, Kim
Wang, Edwin
Munro, Carol A
Bates, Steve
Gow, Neil A
Hoyer, Lois L
Köhler, Gerwald
Morschhäuser, Joachim
Newport, George
Znaidi, Sadri
Raymond, Martine
Turcotte, Bernard
Sherlock, Gavin
Costanzo, Maria
Ihmels, Jan
Berman, Judith
Sanglard, Dominique
Agabian, Nina
Mitchell, Aaron P
Johnson, Alexander D
Whiteway, Malcolm
Nantel, André
author_sort Braun, Burkhard R
collection PubMed
description Recent sequencing and assembly of the genome for the fungal pathogen Candida albicans used simple automated procedures for the identification of putative genes. We have reviewed the entire assembly, both by hand and with additional bioinformatic resources, to accurately map and describe 6,354 genes and to identify 246 genes whose original database entries contained sequencing errors (or possibly mutations) that affect their reading frame. Comparison with other fungal genomes permitted the identification of numerous fungus-specific genes that might be targeted for antifungal therapy. We also observed that, compared to other fungi, the protein-coding sequences in the C. albicans genome are especially rich in short sequence repeats. Finally, our improved annotation permitted a detailed analysis of several multigene families, and comparative genomic studies showed that C. albicans has a far greater catabolic range, encoding respiratory Complex 1, several novel oxidoreductases and ketone body degrading enzymes, malonyl-CoA and enoyl-CoA carriers, several novel amino acid degrading enzymes, a variety of secreted catabolic lipases and proteases, and numerous transporters to assimilate the resulting nutrients. The results of these efforts will ensure that the Candida research community has uniform and comprehensive genomic information for medical research as well as for future diagnostic and therapeutic applications.
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spelling pubmed-11835202005-08-15 A Human-Curated Annotation of the Candida albicans Genome Braun, Burkhard R van het Hoog, Marco d'Enfert, Christophe Martchenko, Mikhail Dungan, Jan Kuo, Alan Inglis, Diane O Uhl, M. Andrew Hogues, Hervé Berriman, Matthew Lorenz, Michael Levitin, Anastasia Oberholzer, Ursula Bachewich, Catherine Harcus, Doreen Marcil, Anne Dignard, Daniel Iouk, Tatiana Zito, Rosa Frangeul, Lionel Tekaia, Fredj Rutherford, Kim Wang, Edwin Munro, Carol A Bates, Steve Gow, Neil A Hoyer, Lois L Köhler, Gerwald Morschhäuser, Joachim Newport, George Znaidi, Sadri Raymond, Martine Turcotte, Bernard Sherlock, Gavin Costanzo, Maria Ihmels, Jan Berman, Judith Sanglard, Dominique Agabian, Nina Mitchell, Aaron P Johnson, Alexander D Whiteway, Malcolm Nantel, André PLoS Genet Research Article Recent sequencing and assembly of the genome for the fungal pathogen Candida albicans used simple automated procedures for the identification of putative genes. We have reviewed the entire assembly, both by hand and with additional bioinformatic resources, to accurately map and describe 6,354 genes and to identify 246 genes whose original database entries contained sequencing errors (or possibly mutations) that affect their reading frame. Comparison with other fungal genomes permitted the identification of numerous fungus-specific genes that might be targeted for antifungal therapy. We also observed that, compared to other fungi, the protein-coding sequences in the C. albicans genome are especially rich in short sequence repeats. Finally, our improved annotation permitted a detailed analysis of several multigene families, and comparative genomic studies showed that C. albicans has a far greater catabolic range, encoding respiratory Complex 1, several novel oxidoreductases and ketone body degrading enzymes, malonyl-CoA and enoyl-CoA carriers, several novel amino acid degrading enzymes, a variety of secreted catabolic lipases and proteases, and numerous transporters to assimilate the resulting nutrients. The results of these efforts will ensure that the Candida research community has uniform and comprehensive genomic information for medical research as well as for future diagnostic and therapeutic applications. Public Library of Science 2005-07 2005-06-17 /pmc/articles/PMC1183520/ /pubmed/16103911 http://dx.doi.org/10.1371/journal.pgen.0010001 Text en Copyright: © 2005 Braun et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Braun, Burkhard R
van het Hoog, Marco
d'Enfert, Christophe
Martchenko, Mikhail
Dungan, Jan
Kuo, Alan
Inglis, Diane O
Uhl, M. Andrew
Hogues, Hervé
Berriman, Matthew
Lorenz, Michael
Levitin, Anastasia
Oberholzer, Ursula
Bachewich, Catherine
Harcus, Doreen
Marcil, Anne
Dignard, Daniel
Iouk, Tatiana
Zito, Rosa
Frangeul, Lionel
Tekaia, Fredj
Rutherford, Kim
Wang, Edwin
Munro, Carol A
Bates, Steve
Gow, Neil A
Hoyer, Lois L
Köhler, Gerwald
Morschhäuser, Joachim
Newport, George
Znaidi, Sadri
Raymond, Martine
Turcotte, Bernard
Sherlock, Gavin
Costanzo, Maria
Ihmels, Jan
Berman, Judith
Sanglard, Dominique
Agabian, Nina
Mitchell, Aaron P
Johnson, Alexander D
Whiteway, Malcolm
Nantel, André
A Human-Curated Annotation of the Candida albicans Genome
title A Human-Curated Annotation of the Candida albicans Genome
title_full A Human-Curated Annotation of the Candida albicans Genome
title_fullStr A Human-Curated Annotation of the Candida albicans Genome
title_full_unstemmed A Human-Curated Annotation of the Candida albicans Genome
title_short A Human-Curated Annotation of the Candida albicans Genome
title_sort human-curated annotation of the candida albicans genome
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1183520/
https://www.ncbi.nlm.nih.gov/pubmed/16103911
http://dx.doi.org/10.1371/journal.pgen.0010001
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