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Highly stable trypsin-aggregate coatings on polymer nanofibers for repeated protein digestion

Authors
Kim, Byoung ChanLopez-Ferrer, DanielLee, Sang-MokAhn, Hye-KyungNair, SujithKim, Seong H.Kim, Beom SooPetritis, KonstantinosCamp, David G.Grate, Jay W.Smith, Richard D.Koo, Yoon-MoGu, Man BockKim, Jungbae
Issue Date
4월-2009
Publisher
WILEY
Keywords
Enzyme aggregate coatings; Nanofibers; Protein digestion; Recyclable biocatalysts; Trypsin
Citation
PROTEOMICS, v.9, no.7, pp.1893 - 1900
Indexed
SCIE
SCOPUS
Journal Title
PROTEOMICS
Volume
9
Number
7
Start Page
1893
End Page
1900
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/120297
DOI
10.1002/pmic.200800591
ISSN
1615-9853
Abstract
A stable and robust trypsin-based biocatalytic system was developed and demonstrated for proteomic applications. The system utilizes polymer nanofibers coated with trypsin aggregates for immobilized protease digestions. After covalently attaching an initial layer of trypsin to the polymer nanofibers, highly concentrated trypsin molecules are crosslinked to the layered trypsin by way of a glutaraldehyde treatment. This process produced a 300-fold increase in trypsin activity compared with a conventional method for covalent trypsin immobilization, and proved to be robust in that it still maintained a high level of activity after a year of repeated recycling. This highly stable form of immobilized trypsin was resistant to autolysis, enabling repeated digestions of BSA over 40 days and successful peptide identification by LC-MS/MS. This active and stable form of immobilized trypsin was successfully employed in the digestion of yeast proteome extract with high reproducibility and within shorter time than conventional protein digestion using solution phase trypsin. Finally, the immobilized trypsin was resistant to proteolysis when exposed to other enzymes (i.e., chymotrypsin), which makes it suitable for use in "real-world" proteomic applications. Overall, the biocatalytic nanofibers with trypsin aggregate coatings proved to be an effective approach for repeated and automated protein digestion in proteomic analyses.
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Graduate School > Department of Biotechnology > 1. Journal Articles
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공과대학 (화공생명공학과)
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