Abstract
Intracellular Wolbachia bacteria manipulate arthropod reproduction to promote their own inheritance. The most prevalent mechanism, cytoplasmic incompatibility (CI), traces to a Wolbachia deubiquitylase, CidB, and CidA. CidB has properties of a toxin, while CidA binds CidB and rescues embryonic viability. CidB is also toxic to yeast where we identified both host effects and high-copy suppressors of toxicity. The strongest suppressor was karyopherin-a, a nuclearimport receptor; this required nuclear localization-signal binding. A protein-interaction screen of Drosophila extracts using a substrate-trapping catalytic mutant, CidB*, also identified karyopherina; the P32 protamine-histone exchange factor bound as well. When CidB* bound CidA, these host protein interactions disappeared. These associations would place CidB at the zygotic male pronucleus where CI defects first manifest. Overexpression of karyopherin-a, P32, or CidA in female flies suppressed CI. We propose that CidB targets nuclear-protein import and protaminehistone exchange and that CidA rescues embryos by restricting CidB access to its targets.
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CITATION STYLE
Beckmann, J. F., Sharma, G. D., Mendez, L., Chen, H., & Hochstrasser, M. (2019). The wolbachia cytoplasmic incompatibility enzyme CIDB targets nuclear import and protamine-histone exchange factors. ELife, 8. https://doi.org/10.7554/eLife.50026
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