Evolutionary acquisition of cysteines determines FOXO paralog-specific redox signaling

半胱氨酸的进化获得决定了FOXO同源物特异性的氧化还原信号

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作者:Marrit Putker, Harmjan R Vos, Kim van Dorenmalen, Hesther de Ruiter, Ana G Duran, Berend Snel, Boudewijn M T Burgering, Michiel Vermeulen, Tobias B Dansen

Aims

In this study, we sought to investigate whether redox signaling differentially controls the human FOXO3 and FOXO4 paralogs.

Conclusion

IPO7 and IPO8 control the nuclear import of FOXO3, but not FOXO4, in a redox-sensitive and disulfide-dependent manner. Our findings suggest that evolutionary acquisition of cysteines has contributed to regulatory divergence of FOXO paralogs, and that phylogenetic analysis can aid in the identification of cysteines involved in redox signaling.

Results

We present evidence that FOXO3 and FOXO4 have acquired paralog-specific cysteines throughout vertebrate evolution. Using a proteome-wide screen, we identified previously unknown redox-dependent FOXO3 interaction partners. The nuclear import receptors Importin-7 (IPO7) and Importin-8 (IPO8) form a disulfide-dependent heterodimer with FOXO3, which is required for its reactive oxygen species-induced nuclear translocation. FOXO4 does not interact with IPO7 or IPO8. Innovation and

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