Department of the Control of Genetic Processes, Institute of Gene Biology, Russian Academy of Sciences, Moscow 119334, Russia.
Center for Precision Genome Editing and Genetic Technologies for Biomedicine, Institute of Gene Biology, Russian Academy of Sciences, Moscow 119334, Russia.
Nucleic Acids Res. 2021 Feb 26;49(4):2375-2389. doi: 10.1093/nar/gkab061.
In arthropods, zinc finger-associated domains (ZADs) are found at the N-termini of many DNA-binding proteins with tandem arrays of Cys2-His2 zinc fingers (ZAD-C2H2 proteins). ZAD-C2H2 proteins undergo fast evolutionary lineage-specific expansion and functional diversification. Here, we show that all ZADs from Drosophila melanogaster form homodimers, but only certain ZADs with high homology can also heterodimerize. CG2712, for example, is unable to heterodimerize with its paralog, the previously characterized insulator protein Zw5, with which it shares 46% homology. We obtained a crystal structure of CG2712 protein's ZAD domain that, in spite of a low sequence homology, has similar spatial organization with the only known ZAD structure (from Grauzone protein). Steric clashes prevented the formation of heterodimers between Grauzone and CG2712 ZADs. Using detailed structural analysis, site-directed mutagenesis, and molecular dynamics simulations, we demonstrated that rapid evolutionary acquisition of interaction specificity was mediated by the more energy-favorable formation of homodimers in comparison to heterodimers, and that this specificity was achieved by multiple amino acid substitutions resulting in the formation or breaking of stabilizing interactions. We speculate that specific homodimerization of ZAD-C2H2 proteins is important for their architectural role in genome organization.
在节肢动物中,锌指相关结构域 (ZAD) 位于许多 DNA 结合蛋白的 N 端,这些蛋白具有串联的 Cys2-His2 锌指 (ZAD-C2H2 蛋白) 结构域。ZAD-C2H2 蛋白经历快速的进化谱系特异性扩张和功能多样化。在这里,我们表明来自黑腹果蝇的所有 ZAD 都形成同源二聚体,但只有具有高度同源性的某些 ZAD 才能异源二聚化。例如,CG2712 不能与它的旁系同源物,即之前被表征的绝缘子蛋白 Zw5 异源二聚化,它们共享 46%的同源性。我们获得了 CG2712 蛋白 ZAD 结构域的晶体结构,尽管序列同源性较低,但它与唯一已知的 ZAD 结构(来自 Grauzone 蛋白)具有相似的空间组织。空间位阻阻止了 Grauzone 和 CG2712 ZAD 之间异源二聚体的形成。通过详细的结构分析、定点突变和分子动力学模拟,我们证明了快速进化获得的相互作用特异性是由同源二聚体的形成比异源二聚体更有利能来介导的,这种特异性是通过多个氨基酸取代形成或破坏稳定相互作用来实现的。我们推测 ZAD-C2H2 蛋白的特异性同源二聚化对于它们在基因组组织中的结构作用很重要。