跳转至内容
Merck
  • In vivo deglycosylation of recombinant proteins in plants by co-expression with bacterial PNGase F.

In vivo deglycosylation of recombinant proteins in plants by co-expression with bacterial PNGase F.

Bioengineered (2013-01-19)
Tarlan Mamedov, Vidadi Yusibov
摘要

At present, several eukaryotic expression systems including yeast, insect and mammalian cells and plants are used for the production of recombinant proteins. Proteins with potential N-glycosylation sites are efficiently glycosylated when expressed in these systems. However, the ability of the eukaryotic expression systems to glycosylate may be not desirable for some proteins. If target proteins that do not carry N-linked glycans in the native host contain potential N-linked glycosylation sites, they can be aberrantly glycosylated in the eukaryotic expression systems, thus, potentially impairing biological activity. Recently, we have developed a strategy of enzymatic deglycosylation of proteins in vivo by co-introducing bacterial PNGase F via agroinfiltration followed by transient expression in plants. (1) Here, we summarize our work on this topic and its potential implications.

材料
货号
品牌
产品描述

Sigma-Aldrich
糖苷酶F 来源于脑膜脓毒性伊丽莎白菌, BioReagent, ≥95% (SDS-PAGE)
Sigma-Aldrich
糖苷酶F from Elizabethkingia miricola, buffered aqueous solution
Sigma-Aldrich
PNGase F脑膜炎沙门氏菌, ready-to-use solution, recombinant, expressed in E. coli
Sigma-Aldrich
糖苷酶F 来源于脑膜脓毒性伊丽莎白菌, lyophilized powder, recombinant, expressed in E. coli
Sigma-Aldrich
糖苷酶F 来源于脑膜脓毒性伊丽莎白菌, recombinant, expressed in E. coli, set of 100 units nanomolar unit
Sigma-Aldrich
糖肽酶 A 来源于杏仁, buffered aqueous glycerol solution, ≥0.05 unit/mL