Multi-scale classification decodes the complexity of the human E3 ligome

A Arghya Dutta A Alberto Cristiani S Siddhanta V. Nikte J Jonathan Eisert Y Yves Matthess B Borna Markusic C Cosmin Tudose C Chiara Becht R Ronay Cetin V Varun Jayeshkumar Shah T Thorsten Mosler K Koraljka Husnjak I Ivan Dikic M Manuel Kaulich R Ramachandra M. Bhaskara

Abstract

Abstract E3 ubiquitin ligases are vital enzymes that define the ubiquitin code in cells. Beyond promoting protein degradation to maintain cellular health, they also mediate non-degradative processes like DNA repair, signaling, and immunity. Despite their therapeutic potential, a comprehensive framework for understanding the relationships among diverse E3 ligases is lacking. Here, we classify the “human E3 ligome”—an extensive set of catalytic human E3s—by integrating multi-layered data, including protein sequences, domain architectures, 3D structures, functions, and expression patterns. Our classification is based on a metric-learning paradigm and uses a weakly supervised hierarchical framework to capture authentic relationships across E3 families and subfamilies. It extends the categorization of E3s into RING, HECT, and RBR classes, including non-canonical mechanisms, successfully explains their functional segregation, distinguishes between multi-subunit complexes and standalone enzymes, and maps E3s to substrates and potential drug interactions. Our analysis provides a global view of E3 biology, opening strategies for drugging E3-substrate networks, including drug repurposing and designing specific E3 handles.

Article Details

Volume / Issue Vol. 16, Issue 1
Published December 25, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (15)

A

Arghya Dutta

A

Alberto Cristiani

S

Siddhanta V. Nikte

J

Jonathan Eisert

Y

Yves Matthess

B

Borna Markusic

C

Cosmin Tudose

C

Chiara Becht

R

Ronay Cetin

V

Varun Jayeshkumar Shah

T

Thorsten Mosler

K

Koraljka Husnjak

I

Ivan Dikic

M

Manuel Kaulich

R

Ramachandra M. Bhaskara