The DNA Binding Protein Rfg1 Is a Repressor of Filamentation in Candida albicans

We have identified a repressor of hyphal growth in the pathogenic yeast Candida albicans. The gene was originally cloned in an attempt to characterize the homologue of the Saccharomyces cerevisiae Rox1, a repressor of hypoxic genes. Rox1 is an HMG-domain, DNA binding protein with a repression domain...

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التفاصيل البيبلوغرافية
المؤلف الرئيسي: Khalaf, Roy A. (author)
مؤلفون آخرون: Zitomer, Richard S. (author)
التنسيق: article
منشور في: 2001
الوصول للمادة أونلاين:http://hdl.handle.net/10725/3358
http://www.genetics.org/content/157/4/1503.short
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author Khalaf, Roy A.
author2 Zitomer, Richard S.
author2_role author
author_facet Khalaf, Roy A.
Zitomer, Richard S.
author_role author
dc.creator.none.fl_str_mv Khalaf, Roy A.
Zitomer, Richard S.
dc.date.none.fl_str_mv 2001
2016-03-18T07:36:38Z
2016-03-18T07:36:38Z
2016-03-18
dc.identifier.none.fl_str_mv 0016-6731
http://hdl.handle.net/10725/3358
Khalaf, R. A., & Zitomer, R. S. (2001). The DNA binding protein Rfg1 is a repressor of filamentation in Candida albicans. Genetics, 157(4), 1503-1512.
http://www.genetics.org/content/157/4/1503.short
dc.language.none.fl_str_mv en
dc.relation.none.fl_str_mv Genetics
dc.rights.*.fl_str_mv info:eu-repo/semantics/openAccess
dc.title.none.fl_str_mv The DNA Binding Protein Rfg1 Is a Repressor of Filamentation in Candida albicans
dc.type.none.fl_str_mv Article
info:eu-repo/semantics/publishedVersion
info:eu-repo/semantics/article
description We have identified a repressor of hyphal growth in the pathogenic yeast Candida albicans. The gene was originally cloned in an attempt to characterize the homologue of the Saccharomyces cerevisiae Rox1, a repressor of hypoxic genes. Rox1 is an HMG-domain, DNA binding protein with a repression domain that recruits the Tup1/Ssn6 general repression complex to achieve repression. The C. albicans clone also encoded an HMG protein that was capable of repression of a hypoxic gene in a S. cerevisiae rox1 deletion strain. Gel retardation experiments using the purified HMG domain of this protein demonstrated that it was capable of binding specifically to a S. cerevisiae hypoxic operator DNA sequence. These data seemed to indicate that this gene encoded a hypoxic repressor. However, surprisingly, when a homozygous deletion was generated in C. albicans, the cells became constitutive for hyphal growth. This phenotype was rescued by the reintroduction of the wild-type gene on a plasmid, proving that the hyphal growth phenotype was due to the deletion and not a secondary mutation. Furthermore, oxygen repression of the hypoxic HEM13 gene was not affected by the deletion nor was this putative ROX1 gene regulated positively by oxygen as is the case for the S. cerevisiae gene. All these data indicate that this gene, now designated RFG1 for Repressor of Filamentous Growth, is a repressor of genes required for hyphal growth and not a hypoxic repressor.
eu_rights_str_mv openAccess
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id LAURepo_72dd97240f72f0fbdf7c6caf3c83e939
identifier_str_mv 0016-6731
Khalaf, R. A., & Zitomer, R. S. (2001). The DNA binding protein Rfg1 is a repressor of filamentation in Candida albicans. Genetics, 157(4), 1503-1512.
language_invalid_str_mv en
network_acronym_str LAURepo
network_name_str Lebanese American University repository
oai_identifier_str oai:laur.lau.edu.lb:10725/3358
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spelling The DNA Binding Protein Rfg1 Is a Repressor of Filamentation in Candida albicansKhalaf, Roy A.Zitomer, Richard S.We have identified a repressor of hyphal growth in the pathogenic yeast Candida albicans. The gene was originally cloned in an attempt to characterize the homologue of the Saccharomyces cerevisiae Rox1, a repressor of hypoxic genes. Rox1 is an HMG-domain, DNA binding protein with a repression domain that recruits the Tup1/Ssn6 general repression complex to achieve repression. The C. albicans clone also encoded an HMG protein that was capable of repression of a hypoxic gene in a S. cerevisiae rox1 deletion strain. Gel retardation experiments using the purified HMG domain of this protein demonstrated that it was capable of binding specifically to a S. cerevisiae hypoxic operator DNA sequence. These data seemed to indicate that this gene encoded a hypoxic repressor. However, surprisingly, when a homozygous deletion was generated in C. albicans, the cells became constitutive for hyphal growth. This phenotype was rescued by the reintroduction of the wild-type gene on a plasmid, proving that the hyphal growth phenotype was due to the deletion and not a secondary mutation. Furthermore, oxygen repression of the hypoxic HEM13 gene was not affected by the deletion nor was this putative ROX1 gene regulated positively by oxygen as is the case for the S. cerevisiae gene. All these data indicate that this gene, now designated RFG1 for Repressor of Filamentous Growth, is a repressor of genes required for hyphal growth and not a hypoxic repressor.PublishedN/A2016-03-18T07:36:38Z2016-03-18T07:36:38Z20012016-03-18Articleinfo:eu-repo/semantics/publishedVersioninfo:eu-repo/semantics/article0016-6731http://hdl.handle.net/10725/3358Khalaf, R. A., & Zitomer, R. S. (2001). The DNA binding protein Rfg1 is a repressor of filamentation in Candida albicans. Genetics, 157(4), 1503-1512.http://www.genetics.org/content/157/4/1503.shortenGeneticsinfo:eu-repo/semantics/openAccessoai:laur.lau.edu.lb:10725/33582016-08-31T10:15:58Z
spellingShingle The DNA Binding Protein Rfg1 Is a Repressor of Filamentation in Candida albicans
Khalaf, Roy A.
status_str publishedVersion
title The DNA Binding Protein Rfg1 Is a Repressor of Filamentation in Candida albicans
title_full The DNA Binding Protein Rfg1 Is a Repressor of Filamentation in Candida albicans
title_fullStr The DNA Binding Protein Rfg1 Is a Repressor of Filamentation in Candida albicans
title_full_unstemmed The DNA Binding Protein Rfg1 Is a Repressor of Filamentation in Candida albicans
title_short The DNA Binding Protein Rfg1 Is a Repressor of Filamentation in Candida albicans
title_sort The DNA Binding Protein Rfg1 Is a Repressor of Filamentation in Candida albicans
url http://hdl.handle.net/10725/3358
http://www.genetics.org/content/157/4/1503.short