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Rational design yields RNA-binding zinc finger domains with altered sequence specificity.

RNA (New York, N.Y.) · 2025 · Vol. 31 (2) · pp. 150-163

Abstract

Targeting and manipulating endogenous RNAs in a sequence-specific manner is essential for both understanding RNA biology and developing RNA-targeting therapeutics. RNA-binding zinc fingers (ZnFs) are excellent candidates as designer proteins to expand the RNA-targeting toolbox, due to their compact size and modular sequence recognition. Currently, little is known about how the sequence of RNA-binding ZnF domains governs their binding site specificity. Here, we systematically introduced mutations at the RNA-contacting residues of a well-characterized RNA-binding ZnF protein, ZRANB2, and measured RNA binding of mutant ZnFs using a modified RNA bind-n-seq assay. We identified mutant ZnFs with an altered sequence specificity, preferring to bind a GGG motif instead of the GGU preferred by wild-type ZRANB2. Further, through a series of all-atom molecular dynamics simulations with ZRANB2 and RNA, we characterized changes in the hydrogen-bond network between the protein and RNA that underlie the observed sequence specificity changes. Our analysis of ZRANB2-RNA interactions both in vitro and in silico expands the understanding of ZnF-RNA recognition rules and serves as a foundation for eventual use of RNA-binding ZnFs for programmable RNA targeting.

Publication Types

["Journal Article"]

Keywords

MeSH Terms

["Zinc Fingers", "RNA", "RNA-Binding Proteins", "Binding Sites", "Protein Binding", "Molecular Dynamics Simulation", "Humans", "Mutation"]

Funding

U24 HG009889 NHGRI NIH HHS (United States)
S10 OD026929 NIH HHS (United States)
R01 HG004659 NHGRI NIH HHS (United States)
R01 HG011864 NHGRI NIH HHS (United States)
R35 GM144121 NIGMS NIH HHS (United States)
R01 NS103172 NINDS NIH HHS (United States)
U41 HG009889 NHGRI NIH HHS (United States)
S10 OD025052 NIH HHS (United States)
R01 MH131907 NIMH NIH HHS (United States)