The fission yeast Swi5‐Sfr1 complex stimulates the intrinsic activity of the Rad51 recombinase to promote DNA strand exchange reactions. Domain analyses revealed that Swi5 in a complex with the C‐terminal domain of Sfr1 (Swi5‐Sfr1C) has an essential activator activity for Rad51‐dependent strand exchange. Interestingly, Swi5‐Sfr1C binds very transiently to Rad51, but the N‐terminal domain of Sfr1 (Sfr1N) binds to Rad51 with much higher affinity. The structures of Swi5, Swi5‐Sfr1 and Swi5‐SfrC have been determined. Swi5 and Sfr1C form a tight 1:1 complex of a parallel coiled‐coil heterodimer that is joined firmly together via two newly identified leucine‐zipper motifs and a bundle. The resultant coiled‐coil is sharply kinked, generating an elongated crescent‐shaped structure suitable for binding within the helical groove of the Rad51 filament. The N‐terminal region of Sfr1 is intrinsically disordered. We suggest that the snug fit resulting from the complementary geometry of Swi5‐Sfr1C activates the Rad51 filament by retaining it as an ATP‐bound form and that Sfr1N plays an anchor role in a transient set‐in of the Swi5‐Sfr1 complex into the filament groove. This transient interaction may be critically important for efficient DNA strand exchange as the groove directly participates in incorporating homologous duplex DNA.
Read full abstract