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A High Yield and Cost-efficient Expression System of Human Granzymes in Mammalian Cells
Published on: June 10, 2015
A High Yield and Cost-efficient Expression System of Human Granzymes in Mammalian Cells
Farokh Dotiwala1, Isabelle Fellay2, Luis Filgueira2
1Cellular and Molecular Medicine Program, Boston Children's Hospital and Harvard Medical School.
Abstract:
When cytotoxic T lymphocytes (CTL) or natural killer (NK) cells recognize tumor cells or cells infected with intracellular pathogens, they release their cytotoxic granule content to eliminate the target cells and the intracellular pathogen. Death of the host cells and intracellular pathogens is triggered by the granule serine proteases, granzymes (Gzms), delivered into the host cell cytosol by the pore forming protein perforin (PFN) and into bacterial pathogens by the prokaryotic membrane disrupting protein granulysin (GNLY). To investigate the molecular mechanisms of target cell death mediated by the Gzms in experimental in-vitro settings, protein expression and purification systems that produce high amounts of active enzymes are necessary. Mammalian secreted protein expression systems imply the potential to produce correctly folded, fully functional protein that bears posttranslational modification, such as glycosylation. Therefore, we used a cost-efficient calcium precipitation method for transient transfection of HEK293T cells with human Gzms cloned into the expression plasmid pHLsec. Gzm purification from the culture supernatant was achieved by immobilized nickel affinity chromatography using the C-terminal polyhistidine tag provided by the vector. The insertion of an enterokinase site at the N-terminus of the protein allowed the generation of active protease that was finally purified by cation exchange chromatography. The system was tested by producing high levels of cytotoxic human Gzm A, B and M and should be capable to produce virtually every enzyme in the human body in high yields.
Insights
Researchers developed a cost-efficient method to produce high yields of active human granzymes (Gzms) using HEK293T cells. This system facilitates the study of Gzm-mediated cell death mechanisms for cancer and infectious disease research.
Area of Science:
- Immunology
- Molecular Biology
- Biochemistry
Background:
- Cytotoxic T lymphocytes (CTL) and natural killer (NK) cells eliminate target cells using granzymes (Gzms).
- Understanding Gzm mechanisms requires high yields of active enzymes for in vitro studies.
- Mammalian expression systems offer potential for producing functional, post-translationally modified proteins.
Purpose of the Study:
- To establish a cost-efficient protein expression and purification system for active human granzymes.
- To enable detailed investigation of molecular mechanisms underlying granzyme-mediated cell death.
Main Methods:
- Transient transfection of HEK293T cells with human Gzms using the pHLsec plasmid and calcium precipitation.
- Purification of Gzms from culture supernatant via immobilized nickel affinity chromatography.
- Generation of active protease using an N-terminal enterokinase site, followed by cation exchange chromatography.
Main Results:
- Successfully produced high levels of active cytotoxic human Gzm A, B, and M.
- Demonstrated a cost-efficient method for producing functional granzymes.
Conclusions:
- The developed system efficiently produces active human granzymes.
- This method is adaptable for high-yield production of various human enzymes for research purposes.
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