A cell-free biosynthesis platform for modular construction of protein glycosylation pathways

Author:

Kightlinger WestonORCID,Duncker Katherine E.ORCID,Ramesh AshvitaORCID,Thames Ariel H.ORCID,Natarajan AravindORCID,Stark Jessica C.ORCID,Yang Allen,Lin LiangORCID,Mrksich MilanORCID,DeLisa Matthew P.ORCID,Jewett Michael C.ORCID

Abstract

AbstractGlycosylation plays important roles in cellular function and endows protein therapeutics with beneficial properties. However, constructing biosynthetic pathways to study and engineer precise glycan structures on proteins remains a bottleneck. Here, we report a modular, versatile cell-free platform for glycosylation pathway assembly by rapid in vitro mixing and expression (GlycoPRIME). In GlycoPRIME, glycosylation pathways are assembled by mixing-and-matching cell-free synthesized glycosyltransferases that can elaborate a glucose primer installed onto protein targets by an N-glycosyltransferase. We demonstrate GlycoPRIME by constructing 37 putative protein glycosylation pathways, creating 23 unique glycan motifs, 18 of which have not yet been synthesized on proteins. We use selected pathways to synthesize a protein vaccine candidate with an α-galactose adjuvant motif in a one-pot cell-free system and human antibody constant regions with minimal sialic acid motifs in glycoengineered Escherichia coli. We anticipate that these methods and pathways will facilitate glycoscience and make possible new glycoengineering applications.

Funder

National Science Foundation

United States Department of Defense | Defense Threat Reduction Agency

David and Lucile Packard Foundation

Camille and Henry Dreyfus Foundation

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry

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