C14ORF39/SIX6OS1 is a constituent of the synaptonemal complex and is essential for mouse fertility

Publication date

2016

Authors

Gómez-H, Laura
Felipe-Medina, Natalia
Sánchez-Martín, Manuel
Davies, Owen R
Ramos, Isabel
García-Tuñón, Ignacio
de Rooij, Dirk GISNI 0000000395706104
Dereli, Ihsan
Tóth, Attila
Barbero, José Luis

Editors

Advisors

Supervisors

Document Type

Article
Open Access logo

License

cc_by

Abstract

Meiotic recombination generates crossovers between homologous chromosomes that are essential for genome haploidization. The synaptonemal complex is a 'zipper'-like protein assembly that synapses homologue pairs together and provides the structural framework for processing recombination sites into crossovers. Humans show individual differences in the number of crossovers generated across the genome. Recently, an anonymous gene variant in C14ORF39/SIX6OS1 was identified that influences the recombination rate in humans. Here we show that C14ORF39/SIX6OS1 encodes a component of the central element of the synaptonemal complex. Yeast two-hybrid analysis reveals that SIX6OS1 interacts with the well-established protein synaptonemal complex central element 1 (SYCE1). Mice lacking SIX6OS1 are defective in chromosome synapsis at meiotic prophase I, which provokes an arrest at the pachytene-like stage and results in infertility. In accordance with its role as a modifier of the human recombination rate, SIX6OS1 is essential for the appropriate processing of intermediate recombination nodules before crossover formation.

Keywords

Journal Article

Citation

Gómez-H, L, Felipe-Medina, N, Sánchez-Martín, M, Davies, O R, Ramos, I, García-Tuñón, I, de Rooij, D G, Dereli, I, Tóth, A, Barbero, J L, Benavente, R, Llano, E & Pendas, A M 2016, 'C14ORF39/SIX6OS1 is a constituent of the synaptonemal complex and is essential for mouse fertility', Nature Communications, vol. 7, 13298. https://doi.org/10.1038/ncomms13298