Human Proteoglycan Linkage Region Glycosyltransferases are Dimeric and Show Unexpected Specificities

S Sascha Weidler (University of Bayreuth Bioorganic Chemistry Universitätsstraße 30 95447 Bayreuth Germany) O Ole Bundgaard (University of Bayreuth Bioorganic Chemistry Universitätsstraße 30 95447 Bayreuth Germany) M Markus Hessefort (University of Bayreuth Bioorganic Chemistry Universitätsstraße 30 95447 Bayreuth Germany) M Marisa Rädisch (University of Bayreuth Bioorganic Chemistry Universitätsstraße 30 95447 Bayreuth Germany) C Christopher Günther Franz Graf (University of Bayreuth Bioorganic Chemistry Universitätsstraße 30 95447 Bayreuth Germany) K Kevin Lam V Vanessa J. Neubauer (University of Bayreuth Bioorganic Chemistry Universitätsstraße 30 95447 Bayreuth Germany) J Johanna Eisenreich (University of Bayreuth Bioorganic Chemistry Universitätsstraße 30 95447 Bayreuth Germany) L Leonhard Köhler (University of Bayreuth Bioorganic Chemistry Universitätsstraße 30 95447 Bayreuth Germany) K Kelley W. Moremen (Department of Biochemistry and Molecular Biology) C Catharina Steentoft (Copenhagen Center for Glycomics Departments of Cellular and Molecular Medicine and School of Dentistry University of Copenhagen Denmark) H Henrik Clausen T Teng‐Yi Huang (Genomics Research Center Academia Sinica Taipei Taiwan) S Shang‐Cheng Hung (Genomics Research Center Academia Sinica Taipei Taiwan) C Clemens Steegborn (Department of Biochemistry University of Bayreuth 95447 Bayreuth Germany) M Michael Weyand (Department of Biochemistry University of Bayreuth 95447 Bayreuth Germany) C Carlo Unverzagt (University of Bayreuth Bioorganic Chemistry Universitätsstraße 30 95447 Bayreuth Germany)

Abstract

Abstract We selected the N , O ‐glycosylated proteoglycan bikunin as a model to establish a chemoenzymatic approach to defined proteoglycans using native chemical ligation. Overexpression of the human linkage region glycosyltransferases B4GalT7, B3GalT6 and B3GlcAT‐1 as N ‐terminal SUMO‐fusions gave high yields of soluble and active enzymes in E. col i . When starting with xylosylated bikunin peptides the transferases performed well in enzymatic cascade reactions and provided the desired linkage region tetrasaccharide glycopeptides. B3GalT6 and B3GlcAT‐1 led to side products with N , O ‐glycosylated bikunin peptides revealing unexpected promiscuity of both enzymes towards complex type N ‐glycans. Additionally, B3GalT6 was found to synthesize short poly‐β3 Gal structures. B3GlcAT‐1 can slowly convert the biosynthetic intermediate Gal‐Xyl to the non‐canonical trisaccharide GlcA‐Gal‐Xyl. This reaction independently confirmed the recently detected biosynthetic bypass to GAGs in the case of dysfunctional B3GalT6 (spondylodysplastic Ehlers‐Danlos‐syndrome). The three linkage region glycosyltransferases B4GalT7, B3GalT6 and B3GlcAT‐1 were dimeric in solution and the crystal structure of B3GalT6 was solved showing a covalent dimer linked by a disulfide in the center of the large dimerization domain. This motif appears to be conserved in higher organisms and reinforces the concept of dimeric glycosyltransferases lining the Golgi.

Article Details

Volume / Issue Vol. 65, Issue 3
Published January 16, 2026
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (17)

S

Sascha Weidler

University of Bayreuth Bioorganic Chemistry Universitätsstraße 30 95447 Bayreuth Germany

O

Ole Bundgaard

University of Bayreuth Bioorganic Chemistry Universitätsstraße 30 95447 Bayreuth Germany

M

Markus Hessefort

University of Bayreuth Bioorganic Chemistry Universitätsstraße 30 95447 Bayreuth Germany

M

Marisa Rädisch

University of Bayreuth Bioorganic Chemistry Universitätsstraße 30 95447 Bayreuth Germany

C

Christopher Günther Franz Graf

University of Bayreuth Bioorganic Chemistry Universitätsstraße 30 95447 Bayreuth Germany

K

Kevin Lam

V

Vanessa J. Neubauer

University of Bayreuth Bioorganic Chemistry Universitätsstraße 30 95447 Bayreuth Germany

J

Johanna Eisenreich

University of Bayreuth Bioorganic Chemistry Universitätsstraße 30 95447 Bayreuth Germany

L

Leonhard Köhler

University of Bayreuth Bioorganic Chemistry Universitätsstraße 30 95447 Bayreuth Germany

K

Kelley W. Moremen

Department of Biochemistry and Molecular Biology

C

Catharina Steentoft

Copenhagen Center for Glycomics Departments of Cellular and Molecular Medicine and School of Dentistry University of Copenhagen Denmark

H

Henrik Clausen

T

Teng‐Yi Huang

Genomics Research Center Academia Sinica Taipei Taiwan

S

Shang‐Cheng Hung

Genomics Research Center Academia Sinica Taipei Taiwan

C

Clemens Steegborn

Department of Biochemistry University of Bayreuth 95447 Bayreuth Germany

M

Michael Weyand

Department of Biochemistry University of Bayreuth 95447 Bayreuth Germany

C

Carlo Unverzagt

University of Bayreuth Bioorganic Chemistry Universitätsstraße 30 95447 Bayreuth Germany