Biologyarticle2026-08-15

FAF1 and FAF2 enhance unfolding by p97-UFD1-NPL4 complex enabling rational design of p97 activators

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Abstract

Abstract VCP/p97 is an AAA+ ATPase that, together with its cofactors UFD1-NPL4 (p97-UN), unfolds ubiquitylated substrates to maintain cellular homeostasis. The human p97-UN complex associates with additional cofactors, but how these cofactors modulate p97-UN activity is not fully understood. Here, we screen cofactors and identify FAF2 to potently enhance substrate unfolding by p97-UN. Using biochemical and structural approaches, we show how FAF2 engages p97-UN and polyubiquitin to promote unfolding. We define a conserved activation motif in FAF2 that contacts both UFD1 and the ubiquitin proximal to the initiator, thereby stabilizing and supporting the unfolding of the initiator ubiquitin in a UFD1-dependent manner. We leverage the features of the FAF2 activation motif to engineer de novo proteins that potently enhance unfolding, providing a rational strategy to boost p97 activity. Our findings reveal how cofactors can provide additional adaptive control, fine-tuning human p97 activity to unfold challenging substrates and those modified with short ubiquitin chains.

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View paper (DOI)Open access versionOpenAlexThe EMBO JournalPublished 2026-08-15

Authors: Pritha Dasgupta, Ian R. Kelsall, Gaurav Anand, Anna Pérez‐Ràfols, Thomas A. Jowitt, Axel Knebel, Robert Gourlay, Glenn R. Masson, Yogesh Kulathu

Institutions: University of Dundee, MRC Protein Phosphorylation and Ubiquitylation Unit, Wellcome Centre for Cell-Matrix Research