Shared binding sites for the chromosomal architectural protein Su(Hw) mediate physical interactions between Drosophila TAD boundaries

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Abstract

The head-to-tail pairing of the nhomie and homie boundaries is responsible for the formation of a stem-loop TAD (topologically associated domain) that encompasses the even-skipped ( eve ) gene and its regulatory elements. TAD boundaries like homie and nhomie have partner preferences and one mechanism thought to be important in linking compatible boundaries is shared binding sites for the same architectural protein. Both eve boundaries have a single binding site for the polydactyl zinc finger protein Su(Hw). Here we have investigated the role of the shared Su(Hw) sites in the long-distance regulation of a dual reporter by the eve enhancers. Consistent with this mechanism, we find that when the transgene nhomie or homie boundary has a mutation in the Su(Hw) binding site, reporter activation by the eve enhancers is severely compromised. Using MicroC we show the mutating the single Su(Hw) substantially weakens the ability of the nhomie and homie boundaries in the transgene to physically pair with the two endogenous eve boundaries. Su(Hw) binding sites are not, however, sufficient as the gypsy su(Hw) insulator is unable to support long-distance regulation. In a less demanding transvection assay mutations in the nhomie and homie Su(hw) site have only a modest effect on regulatory interactions. The eve boundaries can mediate transvection with the gypsy insulator; however. they are not compatible with the dCTCF Fab-8 boundary even in the transvection assay. Finally, we show that the regulatory and physical interactions of the nhomie boundary in the transgene and the two endogenous eve boundaries are incompatible with the popular cohesin-loop extrusion model.

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