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Slow Growth and Increased Spontaneous Mutation Frequency in Respiratory Deficient afo1(-) Yeast Suppressed by a Dominant Mutation in ATP3

A yeast deletion mutation in the nuclear-encoded gene, AFO1, which codes for a mitochondrial ribosomal protein, led to slow growth on glucose, the inability to grow on glycerol or ethanol, and loss of mitochondrial DNA and respiration. We noticed that afo1(-) yeast readily obtains secondary mutation...

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Autores principales: Li, Jing, Rinnerthaler, Mark, Hartl, Johannes, Weber, Manuela, Karl, Thomas, Breitenbach-Koller, Hannelore, Mülleder, Michael, Vowinckel, Jakob, Marx, Hans, Sauer, Michael, Mattanovich, Diethard, Ata, Özge, De, Sonakshi, Greslehner, Gregor P., Geltinger, Florian, Burhans, Bill, Grant, Chris, Doronina, Victoria, Ralser, Meryem, Streubel, Maria Karolin, Grabner, Christian, Jarolim, Stefanie, Moßhammer, Claudia, Gourlay, Campbell W., Hasek, Jiri, Cullen, Paul J., Liti, Gianni, Ralser, Markus, Breitenbach, Michael
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Genetics Society of America 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7718765/
https://www.ncbi.nlm.nih.gov/pubmed/33093184
http://dx.doi.org/10.1534/g3.120.401537
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author Li, Jing
Rinnerthaler, Mark
Hartl, Johannes
Weber, Manuela
Karl, Thomas
Breitenbach-Koller, Hannelore
Mülleder, Michael
Vowinckel, Jakob
Marx, Hans
Sauer, Michael
Mattanovich, Diethard
Ata, Özge
De, Sonakshi
Greslehner, Gregor P.
Geltinger, Florian
Burhans, Bill
Grant, Chris
Doronina, Victoria
Ralser, Meryem
Streubel, Maria Karolin
Grabner, Christian
Jarolim, Stefanie
Moßhammer, Claudia
Gourlay, Campbell W.
Hasek, Jiri
Cullen, Paul J.
Liti, Gianni
Ralser, Markus
Breitenbach, Michael
author_facet Li, Jing
Rinnerthaler, Mark
Hartl, Johannes
Weber, Manuela
Karl, Thomas
Breitenbach-Koller, Hannelore
Mülleder, Michael
Vowinckel, Jakob
Marx, Hans
Sauer, Michael
Mattanovich, Diethard
Ata, Özge
De, Sonakshi
Greslehner, Gregor P.
Geltinger, Florian
Burhans, Bill
Grant, Chris
Doronina, Victoria
Ralser, Meryem
Streubel, Maria Karolin
Grabner, Christian
Jarolim, Stefanie
Moßhammer, Claudia
Gourlay, Campbell W.
Hasek, Jiri
Cullen, Paul J.
Liti, Gianni
Ralser, Markus
Breitenbach, Michael
author_sort Li, Jing
collection PubMed
description A yeast deletion mutation in the nuclear-encoded gene, AFO1, which codes for a mitochondrial ribosomal protein, led to slow growth on glucose, the inability to grow on glycerol or ethanol, and loss of mitochondrial DNA and respiration. We noticed that afo1(-) yeast readily obtains secondary mutations that suppress aspects of this phenotype, including its growth defect. We characterized and identified a dominant missense suppressor mutation in the ATP3 gene. Comparing isogenic slowly growing rho-zero and rapidly growing suppressed afo1(-) strains under carefully controlled fermentation conditions showed that energy charge was not significantly different between strains and was not causal for the observed growth properties. Surprisingly, in a wild-type background, the dominant suppressor allele of ATP3 still allowed respiratory growth but increased the petite frequency. Similarly, a slow-growing respiratory deficient afo1(-) strain displayed an about twofold increase in spontaneous frequency of point mutations (comparable to the rho-zero strain) while the suppressed strain showed mutation frequency comparable to the respiratory-competent WT strain. We conclude, that phenotypes that result from afo1(-) are mostly explained by rapidly emerging mutations that compensate for the slow growth that typically follows respiratory deficiency.
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spelling pubmed-77187652020-12-17 Slow Growth and Increased Spontaneous Mutation Frequency in Respiratory Deficient afo1(-) Yeast Suppressed by a Dominant Mutation in ATP3 Li, Jing Rinnerthaler, Mark Hartl, Johannes Weber, Manuela Karl, Thomas Breitenbach-Koller, Hannelore Mülleder, Michael Vowinckel, Jakob Marx, Hans Sauer, Michael Mattanovich, Diethard Ata, Özge De, Sonakshi Greslehner, Gregor P. Geltinger, Florian Burhans, Bill Grant, Chris Doronina, Victoria Ralser, Meryem Streubel, Maria Karolin Grabner, Christian Jarolim, Stefanie Moßhammer, Claudia Gourlay, Campbell W. Hasek, Jiri Cullen, Paul J. Liti, Gianni Ralser, Markus Breitenbach, Michael G3 (Bethesda) Investigations A yeast deletion mutation in the nuclear-encoded gene, AFO1, which codes for a mitochondrial ribosomal protein, led to slow growth on glucose, the inability to grow on glycerol or ethanol, and loss of mitochondrial DNA and respiration. We noticed that afo1(-) yeast readily obtains secondary mutations that suppress aspects of this phenotype, including its growth defect. We characterized and identified a dominant missense suppressor mutation in the ATP3 gene. Comparing isogenic slowly growing rho-zero and rapidly growing suppressed afo1(-) strains under carefully controlled fermentation conditions showed that energy charge was not significantly different between strains and was not causal for the observed growth properties. Surprisingly, in a wild-type background, the dominant suppressor allele of ATP3 still allowed respiratory growth but increased the petite frequency. Similarly, a slow-growing respiratory deficient afo1(-) strain displayed an about twofold increase in spontaneous frequency of point mutations (comparable to the rho-zero strain) while the suppressed strain showed mutation frequency comparable to the respiratory-competent WT strain. We conclude, that phenotypes that result from afo1(-) are mostly explained by rapidly emerging mutations that compensate for the slow growth that typically follows respiratory deficiency. Genetics Society of America 2020-10-22 /pmc/articles/PMC7718765/ /pubmed/33093184 http://dx.doi.org/10.1534/g3.120.401537 Text en Copyright © 2020 Li et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Investigations
Li, Jing
Rinnerthaler, Mark
Hartl, Johannes
Weber, Manuela
Karl, Thomas
Breitenbach-Koller, Hannelore
Mülleder, Michael
Vowinckel, Jakob
Marx, Hans
Sauer, Michael
Mattanovich, Diethard
Ata, Özge
De, Sonakshi
Greslehner, Gregor P.
Geltinger, Florian
Burhans, Bill
Grant, Chris
Doronina, Victoria
Ralser, Meryem
Streubel, Maria Karolin
Grabner, Christian
Jarolim, Stefanie
Moßhammer, Claudia
Gourlay, Campbell W.
Hasek, Jiri
Cullen, Paul J.
Liti, Gianni
Ralser, Markus
Breitenbach, Michael
Slow Growth and Increased Spontaneous Mutation Frequency in Respiratory Deficient afo1(-) Yeast Suppressed by a Dominant Mutation in ATP3
title Slow Growth and Increased Spontaneous Mutation Frequency in Respiratory Deficient afo1(-) Yeast Suppressed by a Dominant Mutation in ATP3
title_full Slow Growth and Increased Spontaneous Mutation Frequency in Respiratory Deficient afo1(-) Yeast Suppressed by a Dominant Mutation in ATP3
title_fullStr Slow Growth and Increased Spontaneous Mutation Frequency in Respiratory Deficient afo1(-) Yeast Suppressed by a Dominant Mutation in ATP3
title_full_unstemmed Slow Growth and Increased Spontaneous Mutation Frequency in Respiratory Deficient afo1(-) Yeast Suppressed by a Dominant Mutation in ATP3
title_short Slow Growth and Increased Spontaneous Mutation Frequency in Respiratory Deficient afo1(-) Yeast Suppressed by a Dominant Mutation in ATP3
title_sort slow growth and increased spontaneous mutation frequency in respiratory deficient afo1(-) yeast suppressed by a dominant mutation in atp3
topic Investigations
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7718765/
https://www.ncbi.nlm.nih.gov/pubmed/33093184
http://dx.doi.org/10.1534/g3.120.401537
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