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Zemke, L.

Publications and source records attributed to Zemke, L..

2 recordsLinked to original sources

Revealing the unexpected interplay between the Proteasome Activator PA200 and the immunoproteasome

The proteasome activator PA200 binds to the catalytic core of the proteasome, the 20S, and activates its proteolytic activities. The cellular function of PA200 is poorly understood and appears to be cell type and differentiation specific. Recent evidence suggests that PA200 not only binds to the standard 20S (s20S) proteasome but also to the specialized immunoproteasome (i20S) which plays a key role in anti-viral and anti-tumor immunity. We here investigated the interaction of PA200 and the immunoproteasome in detail. We show the very first cryo-EM structures of the singly- and doubly-capped i20S-PA200 complexes that revealed no major difference regarding the first binding event of PA200 to the i20S vs. the s20S. However, first PA200 binding triggered a subtle and long range allosteric bending of the i20S barrel which was not seen in the s20S-PA200 complexes. This resulted in major structural rearrangements in the opposite unbound ring - the displacement of atoms up to 5.4 [A] and the increase in its outer diameter - thereby increasing the occupancy of the second PA200 binding site. Mass photometry confirmed higher occupancy of PA200 to the i20S versus the s20S. Binding of PA200 to the i20S enhanced proteasomal activation compared to the s20S. Co-expression of PA200 and the i20S in cells and tissues, however, is restricted but their interaction is favored upon co-expression. The expression of PA200 and the catalytic subunits of the i20S is differentially regulated depending on the cellular context. Our data also suggest that PA200 has the potential to regulate i20S gene expression whereas the i20S has no effects on PA200 expression. Overall, this work sheds new light on the interaction of PA200 with the i20S from a structural, mechanistic and cellular point of view. Importantly, we identify PA200 as a key regulator of the i20S whenever PA200 and the catalytic subunits of the i20S are co-expressed in the same cell.

biochemistry↗

The proteasome activator PA200 regulates tumor cell invasion

Proteasome activator 200 (PA200) is upregulated in non-small cell lung cancer (NSCLC) and linked to poor prognosis. We previously demonstrated that the overexpression of PA200 in NSCLC is associated with immune evasion and reduced responsiveness to immune checkpoint inhibitors. The cell autonomous function of PA200 in cancer growth, however, is not solved. We here demonstrate that deletion of PA200 in two distinct lung cancer cell lines induced cell-specific alterations in proteasome composition and activities with a minor direct impact on overall proteasome activity. Deficiency of PA200 in lung cancer cells did not consistently alter tumor cell growth in vitro and in vivo. However, we observed concerted inhibition of tumor cell migration and invasion with conserved downregulation of the integrin ITGB3 and transcriptional dysregulation of multiple cell adhesion and ECM regulators. Our transcriptome profiling revealed a striking disparity in the transcriptional response to PA200 deletion in the two lung cancer cell lines. Together with our PA200 interactome analysis that uncovered an unexpected cell-dependent profile of PA200-interacting proteins, our data indicate that the function of PA200 is cell-specific and depends on the cellular context. In conclusion, we here demonstrate that PA200 cell-autonomously regulates the invasive capacities of tumor cells thereby potentially promoting lung cancer spread and metastasis formation. This mechanism might add to PA200-related immune evasion and may contribute to the observed poor prognosis of PA200-overexpressing lung cancer patients.

cancer biology↗