Publication: A simple methodology to assess endolysosomal protease activity involved in antigen processing in human primary cells
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Date
2013
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BioMed Central
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Citation
Vaithilingam, Archana, Nicole Y Lai, Ellen Duong, Julie Boucau, Yang Xu, Mariko Shimada, Malini Gandhi, and Sylvie Le Gall. 2013. “A simple methodology to assess endolysosomal protease activity involved in antigen processing in human primary cells.” BMC Cell Biology 14 (1): 35. doi:10.1186/1471-2121-14-35. http://dx.doi.org/10.1186/1471-2121-14-35.
Research Data
Abstract
Background: Endolysosomes play a key role in maintaining the homeostasis of the cell. They are made of a complex set of proteins that degrade lipids, proteins and sugars. Studies involving endolysosome contribution to cellular functions such as MHC class I and II epitope production have used recombinant endolysosomal proteins, knockout mice that lack one of the enzymes or purified organelles from human tissue. Each of these approaches has some caveats in analyzing endolysosomal enzyme functions. Results: In this study, we have developed a simple methodology to assess endolysosomal protease activity. By varying the pH in crude lysate from human peripheral blood mononuclear cells (PBMCs), we documented increased endolysosomal cathepsin activity in acidic conditions. Using this new method, we showed that the degradation of HIV peptides in low pH extracts analyzed by mass spectrometry followed similar kinetics and degradation patterns as those performed with purified endolysosomes. Conclusion: By using crude lysate in the place of purified organelles this method will be a quick and useful tool to assess endolysosomal protease activities in primary cells of limited availability. This quick method will especially be useful to screen peptide susceptibility to degradation in endolysosomal compartments for antigen processing studies, following which detailed analysis using purified organelles may be used to study specific peptides.
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Keywords
Endolysosome, Antigen processing, Proteases, Cathepsins, Protein degradation, Primary cells, Mass spectrometry, T cell epitope production, MHC, HIV
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