Full Paper
High-Throughput Substrate Specificity Studies of Sialidases by Using Chemoenzymatically Synthesized Sialoside Libraries
Article first published online: 29 DEC 2006
DOI: 10.1002/cbic.200600410
Copyright © 2007 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim
Additional Information
How to Cite
Chokhawala, H. A., Yu, H. and Chen, X. (2007), High-Throughput Substrate Specificity Studies of Sialidases by Using Chemoenzymatically Synthesized Sialoside Libraries. ChemBioChem, 8: 194–201. doi: 10.1002/cbic.200600410
Publication History
- Issue published online: 10 JAN 2007
- Article first published online: 29 DEC 2006
- Manuscript Received: 3 OCT 2006
Funded by
- Mizutani Foundation for Glycoscience
- NIH. Grant Number: R01GM076360
Keywords:
- carbohydrates;
- chemoenzymatic synthesis;
- high-throughput screening;
- sialic acids;
- sialidases
Abstract
Sialidases, or neuraminidases, are enzymes that cleave terminal sialic acid (Sia) residues from complex sialic acid-containing structures. They have been found in many animals and microorganisms and are important in various physiological and pathological processes. In order to understand the biological significance of diverse sialidases, it is important to study in detail the structural determinants of their natural substrates. Here, we report the synthesis of sialoside libraries containing para-nitrophenol-tagged sialosides with different naturally occurring sialic acid forms, different sialyl linkages, and different penultimate monosaccharides using a highly efficient one-pot three-enzyme chemoenzymatic approach. By using these compounds in a 96-well plate-based colorimetric high-throughput screening platform, the diversity of substrate preference is shown for seven bacterial sialidases. The sialoside libraries and the screening method are convenient tools for unravelling the substrate specificity and the biological function of sialidases.

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