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Proteasome 20S core subunit beta type-5 (chymotrypsin-like site of the 26S proteasome) (PSMB5 (β5))

Target
PSMB5 (β5)
Molecular classification
Enzyme (threonine protease; N-terminal threonine active site), Ubiquitin–proteasome system component
01

Overview

The 26S proteasome is a ~2.5 MDa ATP-dependent protease comprising a 20S core particle capped by one or two 19S regulatory particles; it degrades polyubiquitylated proteins in the cytosol and nucleus. The 20S core has four stacked heptameric rings (α7–β7–β7–α7); proteolytic active sites are in the β rings, with three principal activities: trypsin-like (β2), chymotrypsin-like (β5), and caspase-like (β1). The β5 subunit provides the chymotrypsin-like activity via an N-terminal threonine catalytic mechanism exposed after propeptide removal during maturation. The 19S cap recognizes polyubiquitin, deubiquitylates, unfolds, and translocates substrates into the 20S core for degradation, thereby regulating many cellular processes including the cell cycle, DNA replication, transcription, signaling, and stress responses. Clinically, the β5 chymotrypsin-like site is the primary target of approved proteasome inhibitors used in multiple myeloma and related malignancies.

Other names
Proteasome chymotrypsin-like siteβ5 subunit; beta 5 subunitPSMB5Proteasome subunit beta type-5CT-L activity; chymotryptic activity
02

Mechanism of action

Reversible boronate inhibition of the β5 threonine protease active site (e.g., bortezomib), blocking chymotrypsin-like proteolysis and causing accumulation of ubiquitylated proteins, leading to apoptosis in rapidly dividing cells. Irreversible epoxyketone inhibition of β5 (e.g., carfilzomib), covalently modifying the N-terminal threonine and more selectively shutting down chymotrypsin-like activity.

03

Biological functions

Protein degradation of polyubiquitylated substratesRegulation of cell cycle and DNA replicationControl of transcription and signal transductionStress responses and proteostasis
04

Disease associations

Cancer (therapeutic targeting with proteasome inhibitors)Neurodegenerative disease (UPS dysfunction implicated)Inflammation/immune response (antigen processing; immunoproteasome variants modulate activity)Infection (pathogen–host UPS interactions)
05

Safety considerations

Peripheral neuropathy (notably with bortezomib)Myelosuppression and thrombocytopeniaCardiovascular events (reported with carfilzomib)General on-target toxicity from global proteostasis disruption
06

Interacting drugs

Bortezomib (reversible inhibitor; primary activity at β5 chymotrypsin-like site)

3 more in the full profile.

07

Biomarkers

Proteasome chymotrypsin-like activity assays in cells/tissues (functional readout of β5 activity)Accumulation of polyubiquitylated proteins as a pharmacodynamic marker of proteasome inhibitionExpression or induction of immunoproteasome subunits (e.g., β5i) can modulate activity profiles and drug sensitivity in immune/inflammatory contexts

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