Xchromosome and autosomal recombination are differentially sensitive to disruptions in SC maintenance

Author:

Billmyre Katherine KretovichORCID,Cahoon Cori K.,Heenan G. Matthew,Wesley Emily R.,Yu Zulin,Unruh Jay R.,Takeo Satomi,Hawley R. Scott

Abstract

The synaptonemal complex (SC) is a conserved meiotic structure that regulates the repair of double-strand breaks (DSBs) into crossovers or gene conversions. The removal of any central-region SC component, such as theDrosophila melanogastertransverse filament protein C(3)G, causes a complete loss of SC structure and crossovers. To better understand the role of the SC in meiosis, we used CRISPR/Cas9 to construct 3 in-frame deletions within the predicted coiled-coil region of the C(3)G protein. Since these 3 deletion mutations disrupt SC maintenance at different times during pachytene and exhibit distinct defects in key meiotic processes, they allow us to define the stages of pachytene when the SC is necessary for homolog pairing and recombination during pachytene. Our studies demonstrate that theXchromosome and the autosomes display substantially different defects in pairing and recombination when SC structure is disrupted, suggesting that theXchromosome is potentially regulated differently from the autosomes.

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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