Proteomics

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Aggregate-selective removal of pathological tau via clustering-activated degraders


ABSTRACT: Homotypic protein assembly is a critical mediator of biological function and disease state. Selective degradation of protein assemblies, while sparing monomeric forms, is required for interrogation of biological mechanisms and assembly-specific therapeutic intervention. We have exploited the requirement of intermolecular clustering for activation of the E3 ligase TRIM21 to produce TRIM21-nanobody fusions capable of rapidly and selectively degrading assembled proteins. We demonstrate this approach against histone 2B-GFP and tau, a protein that undergoes pathological aggregation in Alzheimer’s and other neurodegenerative diseases. Intracellular expression of TRIM21-nanobody degraders prevented or reversed tau aggregation in culture systems and in vivo, with minimal impact on soluble tau. Our results demonstrate that homotypic quaternary structure is a property of proteins that may be exploited for their selective degradation.

INSTRUMENT(S):

ORGANISM(S): Homo Sapiens (human)

SUBMITTER: Catarina Franco  

LAB HEAD: Leo C James

PROVIDER: PXD052957 | Pride | 2025-05-07

REPOSITORIES: Pride

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Selective degradation of pathological protein aggregates while sparing monomeric forms is of major therapeutic interest. The E3 ligase tripartite motif-containing protein 21 (TRIM21) degrades antibody-bound proteins in an assembly state-specific manner due to the requirement of TRIM21 RING domain clustering for activation, yet effective targeting of intracellular assemblies remains challenging. Here, we fused the RING domain of TRIM21 to a target-specific nanobody to create intracellularly expre  ...[more]

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