A designed ubiquitin-binding protein selectively enriches and visualizes unanchored ubiquitin

While protein ubiquitination has been extensively studied, the roles of unanchored ubiquitin and its chains remain less understood, largely due to a lack of specific, high-affinity tools for their enrichment and visualization. To address this, we used high-throughput affinity maturation and computational protein design to engineer novel proteins that selectively bind unanchored ubiquitin. We first enhanced the binding affinity of the zinc finger domain of histone deacetylase 6, a natural unanchored ubiquitin binder, by including its unstructured amino-terminal loop and introducing the V1091L mutation. Using RFdiffusion, we then designed 11 novel ubiquitin-binding proteins (UBiPs), among which UBiP10 showed specificity for unanchored ubiquitin. This protein enriched unanchored ubiquitin from cells and influenza A virions and served as a probe to determine its cellular levels, supporting a relative decrease upon proteasome inhibition. Imaging studies with UBiP10 further revealed a novel unanchored ubiquitin coat around aggresomes, illustrating the potential of UBiP10 as a unique tool to study unanchored ubiquitin in cellular regulation.

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Publication Details

Journal
Science Advances
Published
2026-09-25
DOI
https://doi.org/10.1126/sciadv.aec0818
Primary Topic
Ubiquitin and proteasome pathways
Type
article
Field-Weighted Citation Impact
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article

A designed ubiquitin-binding protein selectively enriches and visualizes unanchored ubiquitin

Jacint Sanchez, Sohei Majima, Vytautas Iešmantavičius, Cao Chun et al.
Science Advances
Ubiquitin and proteasome pathways
article

A designed ubiquitin-binding protein selectively enriches and visualizes unanchored ubiquitin

Jacint Sanchez, Sohei Majima, Vytautas Iešmantavičius, Cao Chun, Daniel Heß, Alexandra M. Bendel, Georg Kempf, Jeffrey W. Bode, Yohei Yamauchi, Guillaume Diss, Jan Seebacher, Gabriele Matthias, Patrick Matthias, Shihua Shi, Longlong Wang, Sucheta Ghosh, Yong Huang
article en

Abstract

While protein ubiquitination has been extensively studied, the roles of unanchored ubiquitin and its chains remain less understood, largely due to a lack of specific, high-affinity tools for their enrichment and visualization. To address this, we used high-throughput affinity maturation and computational protein design to engineer novel proteins that selectively bind unanchored ubiquitin. We first enhanced the binding affinity of the zinc finger domain of histone deacetylase 6, a natural unanchored ubiquitin binder, by including its unstructured amino-terminal loop and introducing the V1091L mutation. Using RFdiffusion, we then designed 11 novel ubiquitin-binding proteins (UBiPs), among which UBiP10 showed specificity for unanchored ubiquitin. This protein enriched unanchored ubiquitin from cells and influenza A virions and served as a probe to determine its cellular levels, supporting a relative decrease upon proteasome inhibition. Imaging studies with UBiP10 further revealed a novel unanchored ubiquitin coat around aggresomes, illustrating the potential of UBiP10 as a unique tool to study unanchored ubiquitin in cellular regulation.

Science AdvancesVol. 12(39)
University of Basel (CH), ETH Zurich (CH), Max Planck Institute of Colloids and Interfaces (DE), Institute of Pharmaceutical Sciences (CH), Friedrich Miescher Institute (CH)
Openalex Percentile: Top 19%
Ubiquitin and proteasome pathways
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