Genome-wide screening for genes whose deletions confer sensitivity to mutagenic purine base analogs in yeast

<p>Abstract</p> <p>Background</p> <p><it>N</it>-hydroxylated base analogs, such as 6-hydroxylaminopurine (HAP) and 2-amino-6-hydroxylaminopurine (AHA), are strong mutagens in various organisms due to their ambiguous base-pairing properties. The systems prote...

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Main Authors: Kozmin Stanislav G, Stepchenkova Elena I, Alenin Vladimir V, Pavlov Youri I
Format: Article
Language:English
Published: BMC 2005-06-01
Series:BMC Genetics
Online Access:http://www.biomedcentral.com/1471-2156/6/31
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spelling doaj-01b51ca47b8440efba206e28fa1217f42020-11-25T03:29:32ZengBMCBMC Genetics1471-21562005-06-01613110.1186/1471-2156-6-31Genome-wide screening for genes whose deletions confer sensitivity to mutagenic purine base analogs in yeastKozmin Stanislav GStepchenkova Elena IAlenin Vladimir VPavlov Youri I<p>Abstract</p> <p>Background</p> <p><it>N</it>-hydroxylated base analogs, such as 6-hydroxylaminopurine (HAP) and 2-amino-6-hydroxylaminopurine (AHA), are strong mutagens in various organisms due to their ambiguous base-pairing properties. The systems protecting cells from HAP and related noncanonical purines in <it>Escherichia coli </it>include specialized deoxyribonucleoside triphosphatase RdgB, DNA repair endonuclease V, and a molybdenum cofactor-dependent system. Fewer HAP-detoxification systems have been identified in yeast <it>Saccharomyces cerevisiae </it>and other eukaryotes. Cellular systems protecting from AHA are unknown. In the present study, we performed a genome-wide search for genes whose deletions confer sensitivity to HAP and AHA in yeast.</p> <p>Results</p> <p>We screened the library of yeast deletion mutants for sensitivity to the toxic and mutagenic action of HAP and AHA. We identified novel genes involved in the genetic control of base analogs sensitivity, including genes controlling purine metabolism, cytoskeleton organization, and amino acid metabolism.</p> <p>Conclusion</p> <p>We developed a method for screening the yeast deletion library for sensitivity to the mutagenic and toxic action of base analogs and identified 16 novel genes controlling pathways of protection from HAP. Three of them also protect from AHA.</p> http://www.biomedcentral.com/1471-2156/6/31
collection DOAJ
language English
format Article
sources DOAJ
author Kozmin Stanislav G
Stepchenkova Elena I
Alenin Vladimir V
Pavlov Youri I
spellingShingle Kozmin Stanislav G
Stepchenkova Elena I
Alenin Vladimir V
Pavlov Youri I
Genome-wide screening for genes whose deletions confer sensitivity to mutagenic purine base analogs in yeast
BMC Genetics
author_facet Kozmin Stanislav G
Stepchenkova Elena I
Alenin Vladimir V
Pavlov Youri I
author_sort Kozmin Stanislav G
title Genome-wide screening for genes whose deletions confer sensitivity to mutagenic purine base analogs in yeast
title_short Genome-wide screening for genes whose deletions confer sensitivity to mutagenic purine base analogs in yeast
title_full Genome-wide screening for genes whose deletions confer sensitivity to mutagenic purine base analogs in yeast
title_fullStr Genome-wide screening for genes whose deletions confer sensitivity to mutagenic purine base analogs in yeast
title_full_unstemmed Genome-wide screening for genes whose deletions confer sensitivity to mutagenic purine base analogs in yeast
title_sort genome-wide screening for genes whose deletions confer sensitivity to mutagenic purine base analogs in yeast
publisher BMC
series BMC Genetics
issn 1471-2156
publishDate 2005-06-01
description <p>Abstract</p> <p>Background</p> <p><it>N</it>-hydroxylated base analogs, such as 6-hydroxylaminopurine (HAP) and 2-amino-6-hydroxylaminopurine (AHA), are strong mutagens in various organisms due to their ambiguous base-pairing properties. The systems protecting cells from HAP and related noncanonical purines in <it>Escherichia coli </it>include specialized deoxyribonucleoside triphosphatase RdgB, DNA repair endonuclease V, and a molybdenum cofactor-dependent system. Fewer HAP-detoxification systems have been identified in yeast <it>Saccharomyces cerevisiae </it>and other eukaryotes. Cellular systems protecting from AHA are unknown. In the present study, we performed a genome-wide search for genes whose deletions confer sensitivity to HAP and AHA in yeast.</p> <p>Results</p> <p>We screened the library of yeast deletion mutants for sensitivity to the toxic and mutagenic action of HAP and AHA. We identified novel genes involved in the genetic control of base analogs sensitivity, including genes controlling purine metabolism, cytoskeleton organization, and amino acid metabolism.</p> <p>Conclusion</p> <p>We developed a method for screening the yeast deletion library for sensitivity to the mutagenic and toxic action of base analogs and identified 16 novel genes controlling pathways of protection from HAP. Three of them also protect from AHA.</p>
url http://www.biomedcentral.com/1471-2156/6/31
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