Rebecca E. Hardman
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Also affiliated: University of Birmingham (2018–2019)
Research Areas
Biomedical Subjects
Biography and Research Information
OverviewAI-generated summary
Rebecca E. Hardman's research has explored various biological and chemical processes, with a focus on major histocompatibility complex (MHC) molecules, protein quantification, and sulfation pathways. Her work has investigated the aberrant expression of MHC class II molecules by B cells and the hyperexpression of MHC class I molecules in insulin-producing islets in Type 1 diabetes mellitus. Hardman has also studied the mechanisms of human DHEA sulfation, identifying PAPS synthase 2 as a key enzyme in this process. Her publications include methods for the accurate and sensitive quantitation of the dynamic heat shock proteome using tandem mass tags (TMT) and techniques for peptide desalting. Earlier research also examined the effect of enzymes on steroid yield from plant materials.
Metrics
- h-index: 3
- Publications: 9
- Citations: 181
Selected Publications
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Accurate and Sensitive Quantitation of the Dynamic Heat Shock Proteome Using Tandem Mass Tags (2020)
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Tandem Mass Tag (TMT) 10-plex Labeling of Yeast Peptides v1 (2019)
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Peptide Desalting with a Vacuum Manifold v1 (2019)
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Accurate and Sensitive Quantitation of the Dynamic Heat Shock Proteome using Tandem Mass Tags (2019)
Collaboration Network
Top Collaborators
- Accurate and Sensitive Quantitation of the Dynamic Heat Shock Proteome Using Tandem Mass Tags
- Accurate and Sensitive Quantitation of the Dynamic Heat Shock Proteome using Tandem Mass Tags
- Peptide Desalting with a Vacuum Manifold v1
- Tandem Mass Tag (TMT) 10-plex Labeling of Yeast Peptides v1
- Accurate and Sensitive Quantitation of the Dynamic Heat Shock Proteome Using Tandem Mass Tags
- Accurate and Sensitive Quantitation of the Dynamic Heat Shock Proteome using Tandem Mass Tags
- Accurate and Sensitive Quantitation of the Dynamic Heat Shock Proteome Using Tandem Mass Tags
- Accurate and Sensitive Quantitation of the Dynamic Heat Shock Proteome using Tandem Mass Tags
- Accurate and Sensitive Quantitation of the Dynamic Heat Shock Proteome Using Tandem Mass Tags
- Accurate and Sensitive Quantitation of the Dynamic Heat Shock Proteome using Tandem Mass Tags
- Accurate and Sensitive Quantitation of the Dynamic Heat Shock Proteome Using Tandem Mass Tags
- Accurate and Sensitive Quantitation of the Dynamic Heat Shock Proteome using Tandem Mass Tags
- Accurate and Sensitive Quantitation of the Dynamic Heat Shock Proteome Using Tandem Mass Tags
- Accurate and Sensitive Quantitation of the Dynamic Heat Shock Proteome using Tandem Mass Tags
- Accurate and Sensitive Quantitation of the Dynamic Heat Shock Proteome Using Tandem Mass Tags
- Accurate and Sensitive Quantitation of the Dynamic Heat Shock Proteome using Tandem Mass Tags
- Peptide Desalting with a Vacuum Manifold v1
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