University of Sussex
Browse
Nucl._Acids_Res.-1995-Tavassoll-383-8.pdf (3.46 MB)

Cloning and characterisation of the Schizosaccharomyces pombe rad32 gene: A gene required for repair of double strand break and recombination

Download (3.46 MB)
journal contribution
posted on 2023-06-07, 20:55 authored by Manoochehr Tavassoli, Maryam Shayeghi, Anwar Nasim, Felicity Watts
A new Schizosaccharomyces pombe mutant (rad32) which is sensitive to gamma and UV irradiation is described. Pulsed field gel electrophoresis of DNA from irradiated cells indicates that the rad32 mutant, in comparison to wild type cells, has decreased ability to repair DNA double strand breaks. The mutant also undergoes decreased meiotic recombination and displays reduced stability of minichromosomes. The rad32 gene has been cloned by complementation of the UV sensitive phenotype. The gene, which is not essential for cell viability and is expressed at a moderate level in mitotically dividing cells, has significant homology to the meiotic recombination gene MRE11 of Saccharomyces cerevisiae. Epistasis analysis indicates that rad32 functions in a pathway which includes the rhp51 gene (the S. pombe homologue to S. cerevisiae RAD51) and that cells deleted for the rad32 gene in conjunction with either the rad3 deletion (a G2 checkpoint mutation) or the rad2 deletion (a chromosome stability and potential nucleotide excision repair mutation) are not viable.

History

Publication status

  • Published

File Version

  • Published version

Journal

Nucleic Acids Research

ISSN

03051048

Issue

3

Volume

23

Page range

383-388

Department affiliated with

  • Sussex Centre for Genome Damage Stability Publications

Full text available

  • Yes

Peer reviewed?

  • Yes

Legacy Posted Date

2012-02-06

First Open Access (FOA) Date

2016-03-22

First Compliant Deposit (FCD) Date

2016-11-16

Usage metrics

    University of Sussex (Publications)

    Categories

    No categories selected

    Exports

    RefWorks
    BibTeX
    Ref. manager
    Endnote
    DataCite
    NLM
    DC