Expression of Long-form N-Acetylglucosamine-6-O-Sulfotransferase 1 in Human High Endothelial Venules

Author:

Fujiwara Maiko1234,Kobayashi Motohiro1234,Hoshino Hitomi1234,Uchimura Kenji1234,Nakada Tsutomu1234,Masumoto Junya1234,Sakai Yasuhiro1234,Fukuda Minoru1234,Nakayama Jun1234

Affiliation:

1. Department of Molecular Pathology, Shinshu University Graduate School of Medicine, Matsumoto, Japan (MFujiwara,MK,JM,YS,JN)

2. Department of Alzheimer’s Disease Research, National Institute for Longevity Sciences, Obu, Japan (HH,KU)

3. Department of Molecular Pharmacology, Shinshu University School of Medicine, Matsumoto, Japan (TN)

4. Glycobiology Unit, Cancer Research Center, Sanford-Burnham Medical Research Institute, La Jolla, California (MFukuda)

Abstract

Two members of the N-acetylglucosamine-6- O-sulfotransferase (GlcNAc6ST) family, GlcNAc6ST-1 and GlcNAc6ST-2, function in the biosynthesis of 6-sulfo sialyl Lewis X–capped glycoproteins expressed on high endothelial venules (HEVs) in secondary lymphoid organs. Thus, both enzymes play a critical role in L-selectin-expressing lymphocyte homing. Human GlcNAc6ST-1 is encoded by a 1593-bp open reading frame exhibiting two 5′ in-frame methionine codons spaced 141 bp apart. Both resemble the consensus sequence for translation initiation. Thus, it has been hypothesized that both long and short forms of GlcNAc6ST-1 may be present, although endogenous expression of either form has not been confirmed in humans. Here, the authors developed an antibody recognizing amino acid residues between the first two human GlcNAc6ST-1 methionines. This antibody specifically recognizes the long form of the enzyme, a finding validated by Western blot analysis and immunofluorescence cytochemistry of HeLa cells misexpressing long and/or short forms of human GlcNAc6ST-1. Using this antibody, the authors carried out immunofluorescence histochemistry of human lymph node tissue sections and found endogenous expression of the long form of the enzyme in human tissue, predominantly in the trans-Golgi network of endothelial cells that form HEVs.

Publisher

SAGE Publications

Subject

Histology,Anatomy

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