M. Osborne, L. Monnin, K. H. Wolfe
Homing genetic elements are selfish elements that insert themselves into a specific site in a host gene without disrupting its function. They spread through the population because the element codes for an endonuclease that cleaves alleles of the host gene that do not contain the element, leading to DNA repair by gene conversion that increases the element's frequency. Most homing genetic elements in eukaryotes are either self-splicing introns or inteins but we recently discovered a third category, called WHO elements, in the budding yeast genus Torulaspora. WHO elements code for endonuclease proteins with LAGLIDADG motifs and a zinc finger domain, and are related to the mating-type switching endonuclease HO. Their host gene is the aldolase gene FBA1, which is essential. Clusters of up to 9 diverse WHO endonuclease genes are found downstream of FBA1 in different isolates of Torulaspora. Here, we show that there is a genetic conflict between WHO endonucleases and their target site in FBA1. Different alleles of FBA1 vary in their sensitivity or resistance to cleavage by individual WHO endonucleases. We show that a WHO endonuclease recognizes a 28-bp sequence in FBA1 and does not tolerate much sequence variation, but also that this region of FBA1 has experienced positive selection for sequence diversification to evade cleavage. WHO endonucleases and their target site in FBA1 are therefore engaged in an arms race in which each WHO element is under selection to home into other elements, while avoiding being homed into.