The telomerase reverse transcriptase subunit from the dimorphic fungus Ustilago maydis.

In this study, we investigated the reverse transcriptase subunit of telomerase in the dimorphic fungus Ustilago maydis. This protein (Trt1) contains 1371 amino acids and all of the characteristic TERT motifs. Mutants created by disrupting trt1 had senescent traits, such as delayed growth, low replic...

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Main Authors: Dolores Bautista-España, Estela Anastacio-Marcelino, Guillermo Horta-Valerdi, Antonio Celestino-Montes, Milorad Kojic, Erasmo Negrete-Abascal, Hortensia Reyes-Cervantes, Candelario Vázquez-Cruz, Plinio Guzmán, Patricia Sánchez-Alonso
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2014-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC4192592?pdf=render
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spelling doaj-27732e1c94f3448f8d806c9cf765e8642020-11-25T00:51:27ZengPublic Library of Science (PLoS)PLoS ONE1932-62032014-01-01910e10998110.1371/journal.pone.0109981The telomerase reverse transcriptase subunit from the dimorphic fungus Ustilago maydis.Dolores Bautista-EspañaEstela Anastacio-MarcelinoGuillermo Horta-ValerdiAntonio Celestino-MontesMilorad KojicErasmo Negrete-AbascalHortensia Reyes-CervantesCandelario Vázquez-CruzPlinio GuzmánPatricia Sánchez-AlonsoIn this study, we investigated the reverse transcriptase subunit of telomerase in the dimorphic fungus Ustilago maydis. This protein (Trt1) contains 1371 amino acids and all of the characteristic TERT motifs. Mutants created by disrupting trt1 had senescent traits, such as delayed growth, low replicative potential, and reduced survival, that were reminiscent of the traits observed in est2 budding yeast mutants. Telomerase activity was observed in wild-type fungus sporidia but not those of the disruption mutant. The introduction of a self-replicating plasmid expressing Trt1 into the mutant strain restored growth proficiency and replicative potential. Analyses of trt1 crosses in planta suggested that Trt1 is necessary for teliospore formation in homozygous disrupted diploids and that telomerase is haploinsufficient in heterozygous diploids. Additionally, terminal restriction fragment analysis in the progeny hinted at alternative survival mechanisms similar to those of budding yeast.http://europepmc.org/articles/PMC4192592?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Dolores Bautista-España
Estela Anastacio-Marcelino
Guillermo Horta-Valerdi
Antonio Celestino-Montes
Milorad Kojic
Erasmo Negrete-Abascal
Hortensia Reyes-Cervantes
Candelario Vázquez-Cruz
Plinio Guzmán
Patricia Sánchez-Alonso
spellingShingle Dolores Bautista-España
Estela Anastacio-Marcelino
Guillermo Horta-Valerdi
Antonio Celestino-Montes
Milorad Kojic
Erasmo Negrete-Abascal
Hortensia Reyes-Cervantes
Candelario Vázquez-Cruz
Plinio Guzmán
Patricia Sánchez-Alonso
The telomerase reverse transcriptase subunit from the dimorphic fungus Ustilago maydis.
PLoS ONE
author_facet Dolores Bautista-España
Estela Anastacio-Marcelino
Guillermo Horta-Valerdi
Antonio Celestino-Montes
Milorad Kojic
Erasmo Negrete-Abascal
Hortensia Reyes-Cervantes
Candelario Vázquez-Cruz
Plinio Guzmán
Patricia Sánchez-Alonso
author_sort Dolores Bautista-España
title The telomerase reverse transcriptase subunit from the dimorphic fungus Ustilago maydis.
title_short The telomerase reverse transcriptase subunit from the dimorphic fungus Ustilago maydis.
title_full The telomerase reverse transcriptase subunit from the dimorphic fungus Ustilago maydis.
title_fullStr The telomerase reverse transcriptase subunit from the dimorphic fungus Ustilago maydis.
title_full_unstemmed The telomerase reverse transcriptase subunit from the dimorphic fungus Ustilago maydis.
title_sort telomerase reverse transcriptase subunit from the dimorphic fungus ustilago maydis.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2014-01-01
description In this study, we investigated the reverse transcriptase subunit of telomerase in the dimorphic fungus Ustilago maydis. This protein (Trt1) contains 1371 amino acids and all of the characteristic TERT motifs. Mutants created by disrupting trt1 had senescent traits, such as delayed growth, low replicative potential, and reduced survival, that were reminiscent of the traits observed in est2 budding yeast mutants. Telomerase activity was observed in wild-type fungus sporidia but not those of the disruption mutant. The introduction of a self-replicating plasmid expressing Trt1 into the mutant strain restored growth proficiency and replicative potential. Analyses of trt1 crosses in planta suggested that Trt1 is necessary for teliospore formation in homozygous disrupted diploids and that telomerase is haploinsufficient in heterozygous diploids. Additionally, terminal restriction fragment analysis in the progeny hinted at alternative survival mechanisms similar to those of budding yeast.
url http://europepmc.org/articles/PMC4192592?pdf=render
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