Author:
Yashiroda Hideki,Toda Yousuke,Otsu Saori,Takagi Kenji,Mizushima Tsunehiro,Murata Shigeo
Abstract
The proteasome core particle (CP) is a conserved protease complex that is formed by the stacking of two outer α-rings and two inner β-rings. The α-ring is a heteroheptameric ring of subunits α1 to α7 and acts as a gate that restricts entry of substrate proteins into the catalytic cavity formed by the two abutting β-rings. The 31-kDa proteasome inhibitor (PI31) was originally identified as a protein that binds to the CP and inhibits CP activityin vitro, but accumulating evidence indicates that PI31 is required for physiological proteasome activity. To clarify thein vivorole of PI31, we examined theSaccharomyces cerevisiaePI31 ortholog Fub1. Fub1 was essential in a situation where the CP assembly chaperone Pba4 was deleted. The lethality of Δfub1Δpba4was suppressed by deletion of the N terminus of α7 (α7ΔN), which led to the partial activation of the CP. However, deletion of the N terminus of α3, which activates the CP more efficiently than α7ΔN by gate opening, did not suppress Δfub1Δpba4lethality. These results suggest that the α7 N terminus has a role in CP activation different from that of the α3 N terminus and that the role of Fub1 antagonizes a specific function of the α7 N terminus.
Publisher
American Society for Microbiology
Subject
Cell Biology,Molecular Biology
Cited by
15 articles.
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