Javascript must be enabled to continue!
Chromosome-autonomous feedback downregulates meiotic DSB competence upon synaptonemal complex formation
View through CrossRef
The number of DNA double-strand breaks (DSBs) initiating meiotic recombination is elevated in
Saccharomyces cerevisiae
mutants that are globally defective in forming crossovers and synaptonemal complex (SC), a protein scaffold juxtaposing homologous chromosomes. These mutants thus appear to lack a negative feedback loop that inhibits DSB formation when homologs engage one another. This feedback is predicted to be chromosome autonomous, but this has not been tested. Moreover, what chromosomal process is recognized as "homolog engagement" remains unclear. To address these questions, we evaluated effects of homolog engagement defects restricted to small portions of the genome using karyotypically abnormal yeast strains with a homeologous chromosome V pair, monosomic V, or trisomy XV. We found that homolog-engagement-defective chromosomes incurred more DSBs, concomitant with prolonged retention of the DSB-promoting protein Rec114, while the rest of the genome remained unaffected. SC-deficient, crossover-proficient mutants
ecm11
and
gmc2
experienced increased DSB numbers diagnostic of homolog engagement defects. These findings support the hypothesis that SC formation provokes DSB protein dissociation, leading in turn to loss of a DSB competent state. Our findings show that DSB number is regulated in a chromosome-autonomous fashion and provide insight into how homeostatic DSB controls respond to aneuploidy during meiosis.
Title: Chromosome-autonomous feedback downregulates meiotic DSB competence upon synaptonemal complex formation
Description:
The number of DNA double-strand breaks (DSBs) initiating meiotic recombination is elevated in
Saccharomyces cerevisiae
mutants that are globally defective in forming crossovers and synaptonemal complex (SC), a protein scaffold juxtaposing homologous chromosomes.
These mutants thus appear to lack a negative feedback loop that inhibits DSB formation when homologs engage one another.
This feedback is predicted to be chromosome autonomous, but this has not been tested.
Moreover, what chromosomal process is recognized as "homolog engagement" remains unclear.
To address these questions, we evaluated effects of homolog engagement defects restricted to small portions of the genome using karyotypically abnormal yeast strains with a homeologous chromosome V pair, monosomic V, or trisomy XV.
We found that homolog-engagement-defective chromosomes incurred more DSBs, concomitant with prolonged retention of the DSB-promoting protein Rec114, while the rest of the genome remained unaffected.
SC-deficient, crossover-proficient mutants
ecm11
and
gmc2
experienced increased DSB numbers diagnostic of homolog engagement defects.
These findings support the hypothesis that SC formation provokes DSB protein dissociation, leading in turn to loss of a DSB competent state.
Our findings show that DSB number is regulated in a chromosome-autonomous fashion and provide insight into how homeostatic DSB controls respond to aneuploidy during meiosis.
Related Results
Meiotic prophase length modulates Tel1-dependent DNA double-strand break interference
Meiotic prophase length modulates Tel1-dependent DNA double-strand break interference
ABSTRACT
During meiosis, genetic recombination is initiated by the formation of many DNA double-strand breaks (DSBs) catalysed by the evolutionar...
DNA Organization along Pachytene Chromosome Axes and Its Relationship with Crossover Frequencies
DNA Organization along Pachytene Chromosome Axes and Its Relationship with Crossover Frequencies
During meiosis, the number of crossovers vary in correlation to the length of prophase chromosome axes at the synaptonemal complex stage. It has been proposed that the regular spac...
105. MEIOTIC ACROBATS: MONOTREME SEX CHROMOSOME ORGANISATION DURING SPERMATOGENESIS
105. MEIOTIC ACROBATS: MONOTREME SEX CHROMOSOME ORGANISATION DURING SPERMATOGENESIS
Monotremes feature an extraordinarily complex sex chromosome system which shares extensive homology with bird sex chromosomes but no homology to sex chromosomes of other mammals (1...
Systematic evaluation of TaqMan real-time polymerase chain reaction assays targeting the dsb and gltA loci of Ehrlichia canis in recombinant plasmids and naturally infected dogs
Systematic evaluation of TaqMan real-time polymerase chain reaction assays targeting the dsb and gltA loci of Ehrlichia canis in recombinant plasmids and naturally infected dogs
Background and Aim: Because of the diversity of local genotypes of Ehrlichia canis, genes targeted by TaqMan real-time polymerase chain reaction (RT-PCR) assays should be systemati...
SCF
Cdc4
ubiquitin ligase regulates synaptonemal complex formation during meiosis
SCF
Cdc4
ubiquitin ligase regulates synaptonemal complex formation during meiosis
Abstract
Homologous chromosomes pair with each other during meiosis, culminating in the formation of the synaptonemal complex (SC), which is coup...
MEIOSIS IN MALE DROSOPHILA MELANOGASTER I. ISOLATION AND CHARACTERIZATION OF MEIOTIC MUTANTS AFFECTING SECOND CHROMOSOME DISJUNCTION
MEIOSIS IN MALE DROSOPHILA MELANOGASTER I. ISOLATION AND CHARACTERIZATION OF MEIOTIC MUTANTS AFFECTING SECOND CHROMOSOME DISJUNCTION
ABSTRACT
Two second chromosome, EMS-induced, meiotic mutants which cause an increase in second chromosome nondisjunction are described. The first mutant is recessive...
An epistemic justice account of students’ experiences of feedback
An epistemic justice account of students’ experiences of feedback
I am a storyteller. I believe in the power of stories to share experiences and to elucidate thoughts and ideas and to help us to make sense of complex social practices. This thesis...
Meiotic Drive of Chromosomal Knobs Reshaped the Maize Genome
Meiotic Drive of Chromosomal Knobs Reshaped the Maize Genome
Abstract
Meiotic drive is the subversion of meiosis so that particular genes are preferentially transmitted to the progeny. Meiotic drive generally causes the prefer...

