Unknown

Dataset Information

0

Decoding the molecular logic of rapidly evolving ZAD zinc finger proteins in <i>Drosophila</i>.


ABSTRACT: The zinc finger-associated domain (ZAD)-containing C2H2 zinc finger proteins (ZAD-ZnFs) represent the most abundant class of transcription factors that emerged during insect evolution, yet their molecular diversity and biological functions remain largely unclear. Here, we established a systematic CRISPR-based protein-tagging approach that enables direct, unambiguous comparison of nuclear localization and genome-wide binding profiles of endogenous ZAD-ZnFs in developing Drosophila embryos. Evidence is provided that a subset of ZAD-ZnFs forms nuclear condensates through the stacking of the N-terminal ZAD dimerization surface. Disruption of condensation activity leads to misregulation of genome-wide binding profiles and lethality, underscoring its functional and physiological significance in development. Integrative chromatin immunoprecipitation sequencing and Micro-C analyses reveal that many ZAD-ZnFs colocalize with core insulator proteins such as CCCTC-binding factor and Centrosomal protein 190 kD to control the formation of topological boundaries. We suggest that the diverse molecular functions of ZAD-ZnFs have evolutionarily arisen from their ancestral role as insulator-binding proteins.

SUBMITTER: Saito R 

PROVIDER: S-EPMC12947871 | biostudies-literature | 2026 Feb

REPOSITORIES: biostudies-literature

altmetric image

Publications

Decoding the molecular logic of rapidly evolving ZAD zinc finger proteins in &lt;i&gt;Drosophila&lt;/i&gt;.

Saito Raku R   Umemura Yusuke Y   Makino Shiho S   Fukaya Takashi T  

Science advances 20260227 9


The zinc finger-associated domain (ZAD)-containing C2H2 zinc finger proteins (ZAD-ZnFs) represent the most abundant class of transcription factors that emerged during insect evolution, yet their molecular diversity and biological functions remain largely unclear. Here, we established a systematic CRISPR-based protein-tagging approach that enables direct, unambiguous comparison of nuclear localization and genome-wide binding profiles of endogenous ZAD-ZnFs in developing <i>Drosophila</i> embryos.  ...[more]

Similar Datasets

2026-01-08 | GSE295515 | GEO
| S-EPMC1308319 | biostudies-literature
| S-EPMC9531945 | biostudies-literature
2022-05-15 | GSE202468 | GEO
2022-05-15 | GSE202465 | GEO
2022-05-15 | GSE202467 | GEO
2022-05-15 | GSE202466 | GEO
| S-EPMC12424757 | biostudies-literature