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Balagurov, K.

Publications and source records attributed to Balagurov, K..

2 recordsLinked to original sources

Beyond DNA Binding: single C2H2 zinc fingers with adjacent β-strands mediate dimerization in Drosophila transcription factors

C2H2 proteins, characterized by DNA-binding C2H2-type zinc finger domains, constitute the largest group of transcription factors. In addition to binding DNA, C2H2 domains can mediate protein-protein interactions, facilitating oligomerization of C2H2 proteins. In this study, we identified eight C2H2 proteins in the Drosophila genome that feature a unique single C2H2 domain containing a conservedCGEx motif. Yeast two-hybrid assays, SEC-MALS, and chemical cross-linking experiments revealed a strong propensity of these domains to form dimers. Using NMR spectroscopy, we determined the solution structure of the dimeric C2H2 domain from IMZF (Immune-mediated Zinc Finger) protein, providing structural evidence towards the dimerization of C2H2 domains. The structure revealed that dimerization is mediated by the interface between the core C2H2 fold and the adjacent {beta}-strand containingCGEx motif, which was further validated by structure-guided mutagenesis. A bioinformatic survey showed thatCGEx-type C2H2 domains are specific to Diptera. Finally, we demonstrate that putatively dimerizing C2H2 domains containing additional structural elements beyond the canonical fold are widespread among diverse eukaryotic taxa, with the highest prevalence observed in insects. These findings establish that single C2H2 domains can mediate self-association and identify theCGEx-type C2H2 domain as a distinct structural subclass specific to Dipteran insects.

molecular biology↗

The Tramtrack group BTB protein domains are Arthropoda-specific multimerization modules

BTB (Bric-a-brack, Tramtrack and Broad Complex) is a diverse group of protein-protein interaction domains found within metazoan proteins. Transcription factors contain a dimerizing BTB subtype with a characteristic N-terminal extension. The Tramtrack group (TTK) is a distinct type of BTB domain, which can multimerize. Single-particle cryo-EM microscopy revealed that the TTK-type BTB domains assemble into a hexameric structure consisting of three canonical BTB dimers connected through a previously uncharacterized interface. We demonstrated that the TTK-type BTB domains are found only in Arthropods and have undergone lineage-specific expansion in modern insects. The Drosophila genome encodes 24 transcription factors with TTK-type BTB domains, whereas only four have non-TTK-type BTB domains. Yeast two-hybrid analysis revealed that the TTK-type BTB domains have an unusually broad potential for heteromeric associations presumably through dimer-dimer interaction interface. Thus, the TTK-type BTB domains are a structurally and functionally distinct group of protein domains specific to Arthropodan transcription factors.

molecular biology↗