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Optimization of humanized IgGs in glycoengineered Pichia pastoris

Authors :
W. James Cook
Stephen R. Hamilton
Nam Kim
Juergen Hermann Nett
Robert C. Davidson
Youwei Jiang
Bing Gong
Sandra Rios
Byung-Kwon Choi
Michael Cukan
Nga Rewa Houston-Cummings
Jack Hoopes
Natarajan Sethuraman
Tillman U. Gerngross
Rendall R. Strawbridge
Renee Mansfield
Huijuan Li
Stefan Wildt
Bianka Prinz
Terrance A. Stadheim
Dongxing Zha
Nicole Ballew
Piotr Bobrowicz
Source :
Nature biotechnology. 24(2)
Publication Year :
2005

Abstract

As the fastest growing class of therapeutic proteins, monoclonal antibodies (mAbs) represent a major potential drug class. Human antibodies are glycosylated in their native state and all clinically approved mAbs are produced by mammalian cell lines, which secrete mAbs with glycosylation structures that are similar, but not identical, to their human counterparts. Glycosylation of mAbs influences their interaction with immune effector cells that kill antibody-targeted cells. Here we demonstrate that human antibodies with specific human N-glycan structures can be produced in glycoengineered lines of the yeast Pichia pastoris and that antibody-mediated effector functions can be optimized by generating specific glycoforms. Glycoengineered P. pastoris provides a general platform for producing recombinant antibodies with human N-glycosylation.

Details

ISSN :
10870156
Volume :
24
Issue :
2
Database :
OpenAIRE
Journal :
Nature biotechnology
Accession number :
edsair.doi.dedup.....bf44f60342e3796e2e1cdf827f9798a3