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Updated: Aug 13, 2026

Co-immunoprecipitation Assay for Studying Functional Interactions Between Receptors and Enzymes
Published on: September 28, 2018
PA200 modulates immunoproteasome structure and activity
Dušan Živković1,2,3, Amélie Bosc-Rosati1,2, Angelique Sanchez Dafun1,2
1Université de Toulouse, CNRS, IPBS, Toulouse, France.
The proteasome activator PA200 binds to the catalytic core of both standard proteasome (s20S) and the immunoproteasome (i20S); however, whether PA200 uses the same mechanisms to activate i20S remains unknown. In this work, the cryo-EM structures of singly- and doubly-capped i20S-PA200 complexes, combined with complementary in vitro biochemical assays, show that binding of the first PA200 induces allosteric bending of the i20S and widens the opposite α-ring, promoting higher PA200 occupancy and stronger activation compared to the s20S. PA200 also selectively modulates i20S proteolytic activity by enhancing peptide production and shifting cleavage specificity toward caspase-like activity. In cells and tissues co-expressing PA200, s20S, and i20S, PA200 preferentially associates with the i20S. Moreover, PA200 and i20S catalytic subunits are differentially regulated, with PA200 playing a potential role in regulating the i20S subunits' expression. Overall, these findings suggest that PA200 contributes to the regulation of i20S function and dynamics.
The proteasome activator PA200 binds to the catalytic core of both standard proteasome (s20S) and the immunoproteasome (i20S); however, whether PA200 uses the same mechanisms to activate i20S remains unknown. In this work, the cryo-EM structures of singly- and doubly-capped i20S-PA200 complexes, combined with complementary in vitro biochemical assays, show that binding of the first PA200 induces allosteric bending of the i20S and widens the opposite α-ring, promoting higher PA200 occupancy and stronger activation compared to the s20S. PA200 also selectively modulates i20S proteolytic activity by enhancing peptide production and shifting cleavage specificity toward caspase-like activity. In cells and tissues co-expressing PA200, s20S, and i20S, PA200 preferentially associates with the i20S. Moreover, PA200 and i20S catalytic subunits are differentially regulated, with PA200 playing a potential role in regulating the i20S subunits' expression. Overall, these findings suggest that PA200 contributes to the regulation of i20S function and dynamics.
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