Data set for mass spectrometric analysis of recombinant human serum albumin from various expression systems
Daryl G.S. Smith, Grant E. Frahm, Anita Kane, Barry Lorbetskie, Michel Girard, Michael J.W. Johnston, Terry D. Cyr

TL;DR
This paper provides a dataset comparing glycation levels of recombinant human serum albumin from different expression systems, showing higher glycation in rice-expressed samples.
Contribution
The study reveals that glycation in rice-expressed rHSA is a consistent by-product of the expression system or purification process.
Findings
Rice-expressed rHSA samples showed elevated arginine and lysine hexose glycation.
Glycation levels varied between suppliers and production lots.
Glycation appears to be a by-product of the rice expression system or purification process.
Abstract
Human serum albumin (HSA) is a versatile and important protein for the pharmaceutical industry (Fanali et al., Mol. Aspects Med. 33(3) (2012) 209–290). Due to the potential transmission of pathogens from plasma sourced albumin, numerous expression systems have been developed to produce recombinant HSA (rHSA) (Chen et al., Biochim. Biophys. Acta (BBA)—Gen. Subj. 1830(12) (2013) 5515–5525; Kobayashi, Biologicals 34(1) (2006) 55–59). Based on our previous study showing increased glycation of rHSA expressed in Asian rice (Frahm et al., J. Phys. Chem. B 116(15) (2012) 4661–4670), both supplier-to-supplier and lot-to-lot variability of rHSAs from a number of expression systems were evaluated using reversed phase liquid chromatography linked with MS and MS/MS analyses. The data are associated with the research article ‘Determination of Supplier-to-Supplier and Lot-to-Lot Variability in…
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Taxonomy
TopicsProtein Interaction Studies and Fluorescence Analysis · Advanced Glycation End Products research · Protein purification and stability
