Literature DB >> 15033939

Mapping critical biological motifs and biosynthetic pathways of heparan sulfate.

Roger Lawrence1, Balagurunathan Kuberan, Miroslaw Lech, David L Beeler, Robert D Rosenberg.   

Abstract

Heparan sulfate (HS) interacts with numerous proteins at the cell surface and orchestrates myriad biological events. Unraveling the mechanisms of these events at the molecular level calls for the structural analysis of these negatively charged and highly heterogeneous biopolymers. However, HS is often available only in small quantities, and the task of structural analysis necessitates the use of ultra-sensitive methods, such as mass spectrometry. Sequence heterogeneity within HS chains required us to identify critical functional groups and their spacing to determine structure-function relationships for HS. We carried out structural analysis of HS isolated from wild type, 3-OST-1, 3-OST-3A, or 3-OST-5 sulfotransferase-transduced Chinese hamster ovary cells and also from various tissues. In the context of tissue-specific HS, the data allowed us to map the biosynthetic pathways responsible for the placement of critical groups. As a means of determining the distance between critical groups within a motif, we determined the spacing of the rare GlcNAc-GlcA disaccharide sequence in the completely desulfated re-N-sulfated porcine intestinal heparin. These disaccharides are biosynthetic regulatory markers for 3-OST-1 modification and the partial structure of the antithrombin III binding site. They occur only at the distance of hexasaccharide, octasaccharide, decasaccharide, or dodecasaccharide. Thus this approach allowed us to map both the biosynthetic pathways for generating critical functional groups and their spacing within HS. Our new strategy removes two obstacles to rapid progress in this field of research.

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Year:  2004        PMID: 15033939     DOI: 10.1093/glycob/cwh057

Source DB:  PubMed          Journal:  Glycobiology        ISSN: 0959-6658            Impact factor:   4.313


  16 in total

1.  LC-MS/MS characterization of xyloside-primed glycosaminoglycans with cytotoxic properties reveals structural diversity and novel glycan modifications.

Authors:  Andrea Persson; Alejandro Gomez Toledo; Egor Vorontsov; Waqas Nasir; Daniel Willén; Fredrik Noborn; Ulf Ellervik; Katrin Mani; Jonas Nilsson; Göran Larson
Journal:  J Biol Chem       Date:  2018-05-08       Impact factor: 5.157

2.  Lymphatic endothelial heparan sulfate deficiency results in altered growth responses to vascular endothelial growth factor-C (VEGF-C).

Authors:  Xin Yin; Scott C Johns; Roger Lawrence; Ding Xu; Krisanavane Reddi; Joseph R Bishop; Judith A Varner; Mark M Fuster
Journal:  J Biol Chem       Date:  2011-02-22       Impact factor: 5.157

3.  A synthetic heparan sulfate oligosaccharide library reveals the novel enzymatic action of D-glucosaminyl 3-O-sulfotransferase-3a.

Authors:  Thao Kim Nu Nguyen; Sailaja Arungundram; Vy My Tran; Karthik Raman; Kanar Al-Mafraji; Andre Venot; Geert-Jan Boons; Balagurunathan Kuberan
Journal:  Mol Biosyst       Date:  2011-11-24

4.  Glycosaminoglycans in Human and Bovine Serum: Detection of Twenty-Four Heparan Sulfate and Chondroitin Sulfate Motifs Including a Novel Sialic Acid-modified Chondroitin Sulfate Linkage Hexasaccharide.

Authors:  Hong Lu; Lynda M McDowell; Daniel R Studelska; Lijuan Zhang
Journal:  Glycobiol Insights       Date:  2010-02-09

5.  Evolutionary differences in glycosaminoglycan fine structure detected by quantitative glycan reductive isotope labeling.

Authors:  Roger Lawrence; Sara K Olson; Robert E Steele; Lianchun Wang; Rahul Warrior; Richard D Cummings; Jeffrey D Esko
Journal:  J Biol Chem       Date:  2008-09-24       Impact factor: 5.157

6.  Differentiation of 3-O-sulfated heparin disaccharide isomers: identification of structural aspects of the heparin CCL2 binding motif.

Authors:  John K Meissen; Matthew D Sweeney; Matthew Girardi; Roger Lawrence; Jeffrey D Esko; Julie A Leary
Journal:  J Am Soc Mass Spectrom       Date:  2008-12-09       Impact factor: 3.109

7.  The principal neuronal gD-type 3-O-sulfotransferases and their products in central and peripheral nervous system tissues.

Authors:  Roger Lawrence; Tomio Yabe; Sassan Hajmohammadi; John Rhodes; Melissa McNeely; Jian Liu; Edward D Lamperti; Paul A Toselli; Miroslaw Lech; Patricia G Spear; Robert D Rosenberg; Nicholas W Shworak
Journal:  Matrix Biol       Date:  2007-03-30       Impact factor: 11.583

8.  Organ-specific heparan sulfate structural phenotypes.

Authors:  Xiaofeng Shi; Joseph Zaia
Journal:  J Biol Chem       Date:  2009-02-25       Impact factor: 5.157

9.  Tetrasulfated disaccharide unit in heparan sulfate: enzymatic formation and tissue distribution.

Authors:  Hideo Mochizuki; Keiichi Yoshida; Yuniko Shibata; Koji Kimata
Journal:  J Biol Chem       Date:  2008-08-28       Impact factor: 5.157

10.  A critical role for lymphatic endothelial heparan sulfate in lymph node metastasis.

Authors:  Xin Yin; Jadwiga Truty; Roger Lawrence; Scott C Johns; R Sathish Srinivasan; Tracy M Handel; Mark M Fuster
Journal:  Mol Cancer       Date:  2010-12-20       Impact factor: 27.401

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