The roles of the Saccharomyces cerevisiae RecQ helicase SGS1 in meiotic genome surveillance. 2010

Amit Dipak Amin, and Alexandre B H Chaix, and Robert P Mason, and Richard M Badge, and Rhona H Borts
Department of Genetics, University of Leicester, Leicester, United Kingdom.

BACKGROUND The Saccharomyces cerevisiae RecQ helicase Sgs1 is essential for mitotic and meiotic genome stability. The stage at which Sgs1 acts during meiosis is subject to debate. Cytological experiments showed that a deletion of SGS1 leads to an increase in synapsis initiation complexes and axial associations leading to the proposal that it has an early role in unwinding surplus strand invasion events. Physical studies of recombination intermediates implicate it in the dissolution of double Holliday junctions between sister chromatids. RESULTS In this work, we observed an increase in meiotic recombination between diverged sequences (homeologous recombination) and an increase in unequal sister chromatid events when SGS1 is deleted. The first of these observations is most consistent with an early role of Sgs1 in unwinding inappropriate strand invasion events while the second is consistent with unwinding or dissolution of recombination intermediates in an Mlh1- and Top3-dependent manner. We also provide data that suggest that Sgs1 is involved in the rejection of 'second strand capture' when sequence divergence is present. Finally, we have identified a novel class of tetrads where non-sister spores (pairs of spores where each contains a centromere marker from a different parent) are inviable. We propose a model for this unusual pattern of viability based on the inability of sgs1 mutants to untangle intertwined chromosomes. Our data suggest that this role of Sgs1 is not dependent on its interaction with Top3. We propose that in the absence of SGS1 chromosomes may sometimes remain entangled at the end of pre-meiotic replication. This, combined with reciprocal crossing over, could lead to physical destruction of the recombined and entangled chromosomes. We hypothesise that Sgs1, acting in concert with the topoisomerase Top2, resolves these structures. CONCLUSIONS This work provides evidence that Sgs1 interacts with various partner proteins to maintain genome stability throughout meiosis.

UI MeSH Term Description Entries
D008540 Meiosis A type of CELL NUCLEUS division, occurring during maturation of the GERM CELLS. Two successive cell nucleus divisions following a single chromosome duplication (S PHASE) result in daughter cells with half the number of CHROMOSOMES as the parent cells. M Phase, Meiotic,Meiotic M Phase,M Phases, Meiotic,Meioses,Meiotic M Phases,Phase, Meiotic M,Phases, Meiotic M
D008957 Models, Genetic Theoretical representations that simulate the behavior or activity of genetic processes or phenomena. They include the use of mathematical equations, computers, and other electronic equipment. Genetic Models,Genetic Model,Model, Genetic
D011485 Protein Binding The process in which substances, either endogenous or exogenous, bind to proteins, peptides, enzymes, protein precursors, or allied compounds. Specific protein-binding measures are often used as assays in diagnostic assessments. Plasma Protein Binding Capacity,Binding, Protein
D011995 Recombination, Genetic Production of new arrangements of DNA by various mechanisms such as assortment and segregation, CROSSING OVER; GENE CONVERSION; GENETIC TRANSFORMATION; GENETIC CONJUGATION; GENETIC TRANSDUCTION; or mixed infection of viruses. Genetic Recombination,Recombination,Genetic Recombinations,Recombinations,Recombinations, Genetic
D004171 Diploidy The chromosomal constitution of cells, in which each type of CHROMOSOME is represented twice. Symbol: 2N or 2X. Diploid,Diploid Cell,Cell, Diploid,Cells, Diploid,Diploid Cells,Diploidies,Diploids
D004250 DNA Topoisomerases, Type II DNA TOPOISOMERASES that catalyze ATP-dependent breakage of both strands of DNA, passage of the unbroken strands through the breaks, and rejoining of the broken strands. These enzymes bring about relaxation of the supercoiled DNA and resolution of a knotted circular DNA duplex. DNA Topoisomerase (ATP-Hydrolysing),DNA Topoisomerase II,DNA Topoisomerase II alpha,DNA Topoisomerase II beta,DNA Type 2 Topoisomerase,TOP2A Protein,TOP2B Protein,Topoisomerase II,Topoisomerase II alpha,Topoisomerase II beta,Type II DNA Topoisomerase,alpha, Topoisomerase II,beta, Topoisomerase II
D012854 Sister Chromatid Exchange An exchange of segments between the sister chromatids of a chromosome, either between the sister chromatids of a meiotic tetrad or between the sister chromatids of a duplicated somatic chromosome. Its frequency is increased by ultraviolet and ionizing radiation and other mutagenic agents and is particularly high in BLOOM SYNDROME. Chromatid Exchange, Sister,Chromatid Exchanges, Sister,Exchange, Sister Chromatid,Exchanges, Sister Chromatid,Sister Chromatid Exchanges
D013172 Spores, Fungal Reproductive bodies produced by fungi. Conidia,Fungal Spores,Conidium,Fungal Spore,Spore, Fungal
D015825 Chromosomes, Fungal Structures within the nucleus of fungal cells consisting of or containing DNA, which carry genetic information essential to the cell. Chromosome, Fungal,Fungal Chromosome,Fungal Chromosomes
D016681 Genome, Fungal The complete gene complement contained in a set of chromosomes in a fungus. Fungal Genome,Fungal Genomes,Genomes, Fungal

Related Publications

Amit Dipak Amin, and Alexandre B H Chaix, and Robert P Mason, and Richard M Badge, and Rhona H Borts
October 2008, The Journal of biological chemistry,
Amit Dipak Amin, and Alexandre B H Chaix, and Robert P Mason, and Richard M Badge, and Rhona H Borts
March 2000, Genetics,
Amit Dipak Amin, and Alexandre B H Chaix, and Robert P Mason, and Richard M Badge, and Rhona H Borts
February 2000, Current genetics,
Amit Dipak Amin, and Alexandre B H Chaix, and Robert P Mason, and Richard M Badge, and Rhona H Borts
May 1999, Nucleic acids research,
Amit Dipak Amin, and Alexandre B H Chaix, and Robert P Mason, and Richard M Badge, and Rhona H Borts
August 2001, Molecular and cellular biology,
Amit Dipak Amin, and Alexandre B H Chaix, and Robert P Mason, and Richard M Badge, and Rhona H Borts
April 1998, The Journal of biological chemistry,
Amit Dipak Amin, and Alexandre B H Chaix, and Robert P Mason, and Richard M Badge, and Rhona H Borts
August 2008, Molecular cell,
Amit Dipak Amin, and Alexandre B H Chaix, and Robert P Mason, and Richard M Badge, and Rhona H Borts
May 2019, Nucleic acids research,
Amit Dipak Amin, and Alexandre B H Chaix, and Robert P Mason, and Richard M Badge, and Rhona H Borts
January 2013, PloS one,
Amit Dipak Amin, and Alexandre B H Chaix, and Robert P Mason, and Richard M Badge, and Rhona H Borts
February 2013, Journal of microbiology (Seoul, Korea),
Copied contents to your clipboard!