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Featured researches published by Jamey Marth.


Frontiers in Immunology | 2018

CD22-Binding Synthetic Sialosides Regulate B Lymphocyte Proliferation Through CD22 Ligand-Dependent and Independent Pathways, and Enhance Antibody Production in Mice

Naoko Matsubara; Akihiro Imamura; Tatsuya Yonemizu; Chizuru Akatsu; Hongrui Yang; Akiharu Ueki; Natsuki Watanabe; Hajjaj H. M. Abdu-Allah; Nobutaka Numoto; Hiromu Takematsu; Shinobu Kitazume; Thomas F. Tedder; Jamey Marth; Nobutoshi Ito; Hiromune Ando; Hideharu Ishida; Makoto Kiso; Takeshi Tsubata

Sialic acid-binding immunoglobulin-like lectins (Siglecs) are expressed in various immune cells and most of them carry signaling functions. High-affinity synthetic sialoside ligands have been developed for various Siglecs. Therapeutic potentials of the nanoparticles and compounds that contain multiple numbers of these sialosides and other reagents such as toxins and antigens have been demonstrated. However, whether immune responses can be regulated by monomeric sialoside ligands has not yet been known. CD22 (also known as Siglec-2) is an inhibitory molecule preferentially expressed in B lymphocytes (B cells) and is constitutively bound and functionally regulated by α2,6 sialic acids expressed on the same cell (cis-ligands). Here, we developed synthetic sialosides GSC718 and GSC839 that bind to CD22 with high affinity (IC50 ~100 nM), and inhibit ligand binding of CD22. When B cells are activated by B cell antigen receptor (BCR) ligation, both GSC718 and GSC839 downregulate proliferation of B cells, and this regulation requires both CD22 and α2,6 sialic acids. This result suggests that these sialosides regulate BCR ligation-induced B cell activation by reversing endogenous ligand-mediated regulation of CD22. By contrast, GSC718 and GSC839 augment B cell proliferation induced by TLR ligands or CD40 ligation, and this augmentation requires CD22 but not α2,6 sialic acids. Thus, these sialosides appear to enhance B cell activation by directly suppressing the inhibitory function of CD22 independently of endogenous ligand-mediated regulation. Moreover, GSC839 augments B cell proliferation that depends on both BCR ligation and CD40 ligation as is the case for in vivo B cell responses to antigens, and enhanced antibody production to the extent comparable to CpG oligonuleotides or a small amount of alum. Although these known adjuvants induce production of the inflammatory cytokines or accumulation of inflammatory cells, CD22-binding sialosides do not. Thus, synthetic sialosides that bind to CD22 with high-affinity modulate B cell activation through endogenous ligand-dependent and independent pathways, and carry an adjuvant activity without inducing inflammation.


Archive | 1999

Glycobiology of Plant Cells

Ajit Varki; Richard D. Cummings; Jeffrey D. Esko; Hudson H. Freeze; Gerald Hart; Jamey Marth


Archive | 1999

Structures Common to Different Types of Glycans

Ajit Varki; Richard D. Cummings; Jeffrey D. Esko; Hudson H. Freeze; Gerald Hart; Jamey Marth


Archive | 1998

Control of immune responses by modulating activity of glycosyltransferases

Jamey Marth; James C. Paulson


Archive | 1999

Microbial Carbohydrate-binding Proteins

Ajit Varki; Richard D. Cummings; Jeffrey D. Esko; Hudson H. Freeze; Gerald Hart; Jamey Marth


Archive | 1999

USE OF CORE 2 GlcNAc TRANSFERASE INHIBITORS IN TREATING INFLAMMATION

Jamey Marth; Lesliey G. Ellies


Archive | 2000

Prevention of atherosclerosis and undesired blood clotting by reducing von Willebrand factor

Jamey Marth; Lesley G. Ellies


Archive | 1999

DIAGNOSIS OF HUMAN GLYCOSYLATION DISORDERS

Jamey Marth; Hudson H. Freeze


Archive | 2008

Methods of treating coagulopathy

Jamey Marth; Prabhjit Kaur Grewal


Archive | 2005

Regulation of glucose and insulin levels by gnt-4 glycosyltransferase activity

Jamey Marth; Kazuaki Ohtsubo

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Gerald Hart

Johns Hopkins University School of Medicine

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Richard D. Cummings

Beth Israel Deaconess Medical Center

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Chizuru Akatsu

Tokyo Medical and Dental University

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