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Expression system for structural and functional studies of human glycosylation enzymes

Authors :
Moremen, Kelley W
Ramiah, Annapoorani
Stuart, Melissa
Steel, Jason
Meng, Lu
Forouhar, Farhad
Moniz, Heather A
Gahlay, Gagandeep
Gao, Zhongwei
Chapla, Digantkumar
Wang, Shuo
Yang, Jeong-Yeh
Prabhakar, Pradeep Kumar
Johnson, Roy
Rosa, Mitche dela
Geisler, Christoph
Nairn, Alison V
Seetharaman, Jayaraman
Wu, Sheng-Cheng
Tong, Liang
Gilbert, Harry J
LaBaer, Joshua
Jarvis, Donald L
Source :
Nature Chemical Biology; February 2018, Vol. 14 Issue: 2 p156-162, 7p
Publication Year :
2018

Abstract

Vertebrate glycoproteins and glycolipids are synthesized in complex biosynthetic pathways localized predominantly within membrane compartments of the secretory pathway. The enzymes that catalyze these reactions are exquisitely specific, yet few have been extensively characterized because of challenges associated with their recombinant expression as functional products. We used a modular approach to create an expression vector library encoding all known human glycosyltransferases, glycoside hydrolases, and sulfotransferases, as well as other glycan-modifying enzymes. We then expressed the enzymes as secreted catalytic domain fusion proteins in mammalian and insect cell hosts, purified and characterized a subset of the enzymes, and determined the structure of one enzyme, the sialyltransferase ST6GalNAcII. Many enzymes were produced at high yields and at similar levels in both hosts, but individual protein expression levels varied widely. This expression vector library will be a transformative resource for recombinant enzyme production, broadly enabling structure–function studies and expanding applications of these enzymes in glycochemistry and glycobiology.

Details

Language :
English
ISSN :
15524450 and 15524469
Volume :
14
Issue :
2
Database :
Supplemental Index
Journal :
Nature Chemical Biology
Publication Type :
Periodical
Accession number :
ejs44482095
Full Text :
https://doi.org/10.1038/nchembio.2539