Skip to main navigation Skip to search Skip to main content

High Throughput Approaches in Carbohydrate-Active Enzymology: Glycosidase and Glycosyl Transferase Inhibitors, Evolution, and Discovery

  • Lemeng Chao
  • , Seino A K Jongkees

Research output: Contribution to journalSpecial issueAcademicpeer-review

Abstract

Carbohydrates are attached and removed in living systems through the action of carbohydrate-active enzymes such as glycosyl transferases and glycoside hydrolases. The molecules resulting from these enzymes have many important roles in organisms, such as cellular communication, structural support, and energy metabolism. In general, each carbohydrate transformation requires a separate catalyst, and so these enzyme families are extremely diverse. To make this diversity manageable, high throughput approaches look at many enzymes at once. Similarly, high throughput approaches can be a powerful way of finding inhibitors that can be used to tune the reactivity of these enzymes, either in an industrial, a laboratory, or a medicinal setting. We provide here an overview of how these enzymes and inhibitors can be sought using techniques such as high-throughput natural product and combinatorial library screening, phage and mRNA display of (glyco)peptides, fluorescence-activated cell sorting, and metagenomics.

Original languageEnglish
Pages (from-to)12750-12760
Number of pages11
JournalAngewandte Chemie-International Edition
Volume58
Issue number37
DOIs
Publication statusPublished - 26 Mar 2019

Keywords

  • carbohydrates
  • directed evolution
  • enzymes
  • high-throughput screening
  • phage display

Fingerprint

Dive into the research topics of 'High Throughput Approaches in Carbohydrate-Active Enzymology: Glycosidase and Glycosyl Transferase Inhibitors, Evolution, and Discovery'. Together they form a unique fingerprint.

Cite this