טוען...

Mutations Affecting Donor Preference during Mating Type Interconversion in Saccharomyces Cerevisiae

Homothallic strains of Saccharomyces cerevisiae can convert mating type from a to α or α to a as often as every generation, by replacing genetic information specifying one mating type at the expressor locus, MAT, with information specifying the opposite mating type. The cryptic mating type informati...

תיאור מלא

שמור ב:
מידע ביבליוגרפי
Main Authors: Weiler, K. S., Szeto, L., Broach, J. R.
פורמט: Artigo
שפה:English
יצא לאור: 1995
נושאים:
גישה מקוונת:https://ncbi.nlm.nih.gov/pmc/articles/PMC1206479/
https://ncbi.nlm.nih.gov/pubmed/7789755
תגים: הוספת תג
אין תגיות, היה/י הראשונ/ה לתייג את הרשומה!
id pubmed-1206479
record_format dspace
spelling pubmed-12064792006-09-13 Mutations Affecting Donor Preference during Mating Type Interconversion in Saccharomyces Cerevisiae Weiler, K. S. Szeto, L. Broach, J. R. Genetics Investigations Homothallic strains of Saccharomyces cerevisiae can convert mating type from a to α or α to a as often as every generation, by replacing genetic information specifying one mating type at the expressor locus, MAT, with information specifying the opposite mating type. The cryptic mating type information that is copied and inserted at MAT is contained in either of two loci, HML or HMR. The particular locus selected as donor during mating type interconversion is regulated by the allele expressed at MAT. MATa cells usually select HML, and MATα cells usually select HMR, a process referred to as donor preference. To identify factors required for donor preference, we isolated and characterized a number of mutants that frequently selected the nonpreferred donor locus during mating type interconversion. Many of these mutants were found to harbor chromosome rearrangements or mutations at MAT or HML that interfered with the switching process. However, one mutant carried a recessive allele of CHL1, a gene previously shown to be required for efficient chromosome segregation during mitosis. Homothallic strains of yeast containing a null allele of CHL1 exhibited almost random selection of the donor locus in a MATa background but were normal in their ability to select HMR in a MATα background. Our results indicate that Chl1p participates in the process of donor selection and are consistent with a model in which Chl1p helps establish an intrinsic bias in donor preference. 1995-04 /pmc/articles/PMC1206479/ /pubmed/7789755 Text en
institution US National Library of Medicine
collection PubMed Central
language English
format Article
topic Investigations
spellingShingle Investigations
Weiler, K. S.
Szeto, L.
Broach, J. R.
Mutations Affecting Donor Preference during Mating Type Interconversion in Saccharomyces Cerevisiae
description Homothallic strains of Saccharomyces cerevisiae can convert mating type from a to α or α to a as often as every generation, by replacing genetic information specifying one mating type at the expressor locus, MAT, with information specifying the opposite mating type. The cryptic mating type information that is copied and inserted at MAT is contained in either of two loci, HML or HMR. The particular locus selected as donor during mating type interconversion is regulated by the allele expressed at MAT. MATa cells usually select HML, and MATα cells usually select HMR, a process referred to as donor preference. To identify factors required for donor preference, we isolated and characterized a number of mutants that frequently selected the nonpreferred donor locus during mating type interconversion. Many of these mutants were found to harbor chromosome rearrangements or mutations at MAT or HML that interfered with the switching process. However, one mutant carried a recessive allele of CHL1, a gene previously shown to be required for efficient chromosome segregation during mitosis. Homothallic strains of yeast containing a null allele of CHL1 exhibited almost random selection of the donor locus in a MATa background but were normal in their ability to select HMR in a MATα background. Our results indicate that Chl1p participates in the process of donor selection and are consistent with a model in which Chl1p helps establish an intrinsic bias in donor preference.
author Weiler, K. S.
Szeto, L.
Broach, J. R.
author_facet Weiler, K. S.
Szeto, L.
Broach, J. R.
author_sort Weiler, K. S.
title Mutations Affecting Donor Preference during Mating Type Interconversion in Saccharomyces Cerevisiae
title_short Mutations Affecting Donor Preference during Mating Type Interconversion in Saccharomyces Cerevisiae
title_full Mutations Affecting Donor Preference during Mating Type Interconversion in Saccharomyces Cerevisiae
title_fullStr Mutations Affecting Donor Preference during Mating Type Interconversion in Saccharomyces Cerevisiae
title_full_unstemmed Mutations Affecting Donor Preference during Mating Type Interconversion in Saccharomyces Cerevisiae
title_sort mutations affecting donor preference during mating type interconversion in saccharomyces cerevisiae
publishDate 1995
url https://ncbi.nlm.nih.gov/pmc/articles/PMC1206479/
https://ncbi.nlm.nih.gov/pubmed/7789755
_version_ 1760279551226675200