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Examining Proteasome Assembly with Recombinant Archaeal Proteasomes and Nondenaturing PAGE: The Case for a Combined Approach
Published on: December 17, 2016
PA28γ-20S proteasome is a proteolytic complex committed to degrade unfolded proteins
Jean-Yves Alejandro Frayssinhes1, Fulvia Cerruti1, Justine Laulin2
1Department of Veterinary Sciences, University of Turin, Largo P. Braccini 2, 10095, Grugliasco, Turin, Italy.
Abstract:
PA28γ is a nuclear activator of the 20S proteasome that, unlike the 19S regulatory particle, stimulates hydrolysis of several substrates in an ATP- and ubiquitin-independent manner and whose exact biological functions and molecular mechanism of action still remain elusive. In an effort to shed light on these important issues, we investigated the stimulatory effect of PA28γ on the hydrolysis of different fluorogenic peptides and folded or denatured full-length proteins by the 20S proteasome. Importantly, PA28γ was found to dramatically enhance breakdown rates by 20S proteasomes of several naturally or artificially unstructured proteins, but not of their native, folded counterparts. Furthermore, these data were corroborated by experiments in cell lines with a nucleus-tagged myelin basic protein. Finally, mass spectrometry analysis of the products generated during proteasomal degradation of two proteins demonstrated that PA28γ does not increase, but rather decreases, the variability of peptides that are potentially suitable for MHC class I antigen presentation. These unexpected findings indicate that global stimulation of the degradation of unfolded proteins may represent a more general feature of PA28γ and suggests that this proteasomal activator might play a broader role in the pathway of protein degradation than previously believed.
Insights
PA28γ enhances the 20S proteasome
Area of Science:
- Molecular Biology
- Cell Biology
- Biochemistry
Background:
- PA28γ (proteasome activator 28γ) is a nuclear activator of the 20S proteasome.
- Its mechanism of action and biological functions are not fully understood.
- Unlike the 19S regulatory particle, PA28γ stimulates substrate hydrolysis independently of ATP and ubiquitin.
Purpose of the Study:
- To investigate the effect of PA28γ on the hydrolysis of various substrates by the 20S proteasome.
- To elucidate the molecular mechanism and biological functions of PA28γ.
Main Methods:
- Assays using fluorogenic peptides and full-length proteins (folded and denatured) with the 20S proteasome.
- Experiments in cell lines expressing nucleus-tagged myelin basic protein.
- Mass spectrometry analysis of proteasomal degradation products.
Main Results:
- PA28γ significantly enhances the breakdown of unstructured proteins by the 20S proteasome, but not folded proteins.
- Experiments confirmed PA28γ's effect on protein degradation in cell lines.
- Mass spectrometry revealed that PA28γ decreases the diversity of peptides generated from protein degradation.
Conclusions:
- PA28γ globally stimulates the degradation of unfolded proteins.
- PA28γ may have a broader role in protein degradation pathways than previously recognized.
- PA28γ's effect on peptide generation suggests implications for MHC class I antigen presentation.
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