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A Novel High-Mannose Specific Lectin from the Green Alga Halimeda renschii Exhibits a Potent Anti-Influenza Virus Activity through High-Affinity Binding to the Viral Hemagglutinin
by
Hirayama, Makoto
, Morimoto, Kinjiro
, Mu, Jinmin
, Hori, Kanji
, Sato, Yuichiro
in
Affinity
/ Algae
/ Amino Acid Sequence
/ anti-influenza virus activity
/ Antiviral agents
/ Antiviral Agents - isolation & purification
/ Antiviral Agents - pharmacology
/ Aquatic plants
/ Binding
/ Carbohydrates
/ Cells
/ Chlorophyta - chemistry
/ Glycan
/ Glycolipids
/ green alga
/ Halimeda renschii
/ Hemagglutination
/ Hemagglutinins
/ Hemagglutinins, Viral - metabolism
/ high-mannose specificity
/ High-performance liquid chromatography
/ HPLC
/ Influenza
/ Influenza A Virus, H3N2 Subtype - drug effects
/ lectin
/ Lectins
/ Lectins - pharmacology
/ Liquid chromatography
/ Mannans
/ Mannose
/ Mannose - chemistry
/ Mannose-Binding Lectins - chemistry
/ Mannose-Binding Lectins - pharmacology
/ Molecular structure
/ Molecular weight
/ Monosaccharides
/ Monosaccharides - pharmacology
/ N-glycans
/ Oligosaccharides
/ Oligosaccharides - chemistry
/ Polypeptides
/ Polysaccharides
/ Polysaccharides - pharmacology
/ Protein Binding
/ Proteins
/ Rhodophyta - chemistry
/ Specificity
/ Virus Internalization - drug effects
/ Viruses
2017
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A Novel High-Mannose Specific Lectin from the Green Alga Halimeda renschii Exhibits a Potent Anti-Influenza Virus Activity through High-Affinity Binding to the Viral Hemagglutinin
by
Hirayama, Makoto
, Morimoto, Kinjiro
, Mu, Jinmin
, Hori, Kanji
, Sato, Yuichiro
in
Affinity
/ Algae
/ Amino Acid Sequence
/ anti-influenza virus activity
/ Antiviral agents
/ Antiviral Agents - isolation & purification
/ Antiviral Agents - pharmacology
/ Aquatic plants
/ Binding
/ Carbohydrates
/ Cells
/ Chlorophyta - chemistry
/ Glycan
/ Glycolipids
/ green alga
/ Halimeda renschii
/ Hemagglutination
/ Hemagglutinins
/ Hemagglutinins, Viral - metabolism
/ high-mannose specificity
/ High-performance liquid chromatography
/ HPLC
/ Influenza
/ Influenza A Virus, H3N2 Subtype - drug effects
/ lectin
/ Lectins
/ Lectins - pharmacology
/ Liquid chromatography
/ Mannans
/ Mannose
/ Mannose - chemistry
/ Mannose-Binding Lectins - chemistry
/ Mannose-Binding Lectins - pharmacology
/ Molecular structure
/ Molecular weight
/ Monosaccharides
/ Monosaccharides - pharmacology
/ N-glycans
/ Oligosaccharides
/ Oligosaccharides - chemistry
/ Polypeptides
/ Polysaccharides
/ Polysaccharides - pharmacology
/ Protein Binding
/ Proteins
/ Rhodophyta - chemistry
/ Specificity
/ Virus Internalization - drug effects
/ Viruses
2017
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A Novel High-Mannose Specific Lectin from the Green Alga Halimeda renschii Exhibits a Potent Anti-Influenza Virus Activity through High-Affinity Binding to the Viral Hemagglutinin
by
Hirayama, Makoto
, Morimoto, Kinjiro
, Mu, Jinmin
, Hori, Kanji
, Sato, Yuichiro
in
Affinity
/ Algae
/ Amino Acid Sequence
/ anti-influenza virus activity
/ Antiviral agents
/ Antiviral Agents - isolation & purification
/ Antiviral Agents - pharmacology
/ Aquatic plants
/ Binding
/ Carbohydrates
/ Cells
/ Chlorophyta - chemistry
/ Glycan
/ Glycolipids
/ green alga
/ Halimeda renschii
/ Hemagglutination
/ Hemagglutinins
/ Hemagglutinins, Viral - metabolism
/ high-mannose specificity
/ High-performance liquid chromatography
/ HPLC
/ Influenza
/ Influenza A Virus, H3N2 Subtype - drug effects
/ lectin
/ Lectins
/ Lectins - pharmacology
/ Liquid chromatography
/ Mannans
/ Mannose
/ Mannose - chemistry
/ Mannose-Binding Lectins - chemistry
/ Mannose-Binding Lectins - pharmacology
/ Molecular structure
/ Molecular weight
/ Monosaccharides
/ Monosaccharides - pharmacology
/ N-glycans
/ Oligosaccharides
/ Oligosaccharides - chemistry
/ Polypeptides
/ Polysaccharides
/ Polysaccharides - pharmacology
/ Protein Binding
/ Proteins
/ Rhodophyta - chemistry
/ Specificity
/ Virus Internalization - drug effects
/ Viruses
2017
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A Novel High-Mannose Specific Lectin from the Green Alga Halimeda renschii Exhibits a Potent Anti-Influenza Virus Activity through High-Affinity Binding to the Viral Hemagglutinin
Journal Article
A Novel High-Mannose Specific Lectin from the Green Alga Halimeda renschii Exhibits a Potent Anti-Influenza Virus Activity through High-Affinity Binding to the Viral Hemagglutinin
2017
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Overview
We have isolated a novel lectin, named HRL40 from the green alga Halimeda renschii. In hemagglutination-inhibition test and oligosaccharide-binding experiment with 29 pyridylaminated oligosaccharides, HRL40 exhibited a strict binding specificity for high-mannose N-glycans having an exposed (α1-3) mannose residue in the D2 arm of branched mannosides, and did not have an affinity for monosaccharides and other oligosaccharides examined, including complex N-glycans, an N-glycan core pentasaccharide, and oligosaccharides from glycolipids. The carbohydrate binding profile of HRL40 resembled those of Type I high-mannose specific antiviral algal lectins, or the Oscillatoria agardhii agglutinin (OAA) family, which were previously isolated from red algae and a blue-green alga (cyanobacterium). HRL40 potently inhibited the infection of influenza virus (A/H3N2/Udorn/72) into NCI-H292 cells with half-maximal effective dose (ED50) of 2.45 nM through high-affinity binding to a viral envelope hemagglutinin (KD, 3.69 × 10−11 M). HRL40 consisted of two isolectins (HRL40-1 and HRL40-2), which could be separated by reverse-phase HPLC. Both isolectins had the same molecular weight of 46,564 Da and were a disulfide -linked tetrameric protein of a 11,641 Da polypeptide containing at least 13 half-cystines. Thus, HRL40, which is the first Type I high-mannose specific antiviral lectin from the green alga, had the same carbohydrate binding specificity as the OAA family, but a molecular structure distinct from the family.
Publisher
MDPI AG,MDPI
Subject
/ Algae
/ anti-influenza virus activity
/ Antiviral Agents - isolation & purification
/ Antiviral Agents - pharmacology
/ Binding
/ Cells
/ Glycan
/ Hemagglutinins, Viral - metabolism
/ High-performance liquid chromatography
/ HPLC
/ Influenza A Virus, H3N2 Subtype - drug effects
/ lectin
/ Lectins
/ Mannans
/ Mannose
/ Mannose-Binding Lectins - chemistry
/ Mannose-Binding Lectins - pharmacology
/ Monosaccharides - pharmacology
/ Oligosaccharides - chemistry
/ Polysaccharides - pharmacology
/ Proteins
/ Virus Internalization - drug effects
/ Viruses
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