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

被引:32
|
作者
Mu, Jinmin [1 ]
Hirayama, Makoto [1 ]
Sato, Yuichiro [2 ]
Morimoto, Kinjiro [2 ]
Hori, Kanji [1 ]
机构
[1] Hiroshima Univ, Grad Sch Biosphere Sci, Kagamiyama 1-4-4, Higashihiroshima 7398528, Japan
[2] YasudaWomens Univ, Fac Pharm, Asaminami Ku, Yasuhigashi 6-13-1, Hiroshima 7310153, Japan
来源
MARINE DRUGS | 2017年 / 15卷 / 08期
关键词
lectin; green alga; Halimeda renschii; high-mannose specificity; anti-influenza virus activity; ANTI-HIV ACTIVITY; OSCILLATORIA-AGARDHII AGGLUTININ; ENVELOPE GLYCOPROTEIN GP120; MARINE RED ALGA; CARBOHYDRATE-BINDING; HYPNEA-JAPONICA; CYANOVIRIN-N; CULTURED CYANOBACTERIUM; INFLUENZA HEMAGGLUTININ; INACTIVATING PROTEIN;
D O I
10.3390/md15080255
中图分类号
R914 [药物化学];
学科分类号
100701 ;
摘要
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 (alpha 1-3) 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 (K-D, 3.69 x 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.
引用
收藏
页数:15
相关论文
共 6 条
  • [1] A Complex-Type N-Glycan-Specific Lectin Isolated from Green Alga Halimeda borneensis Exhibits Potent Anti-Influenza Virus Activity
    Mu, Jinmin
    Hirayama, Makoto
    Morimoto, Kinjiro
    Hori, Kanji
    INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2024, 25 (08)
  • [2] Anti-influenza virus activity of high-mannose binding lectins derived from genus Pseudomonas
    Morimoto, Kinjiro
    Sato, Yuichiro
    VIRUS RESEARCH, 2016, 223 : 64 - 72
  • [3] High-Mannose Specific Lectin and Its Recombinants from a Carrageenophyta Kappaphycus alvarezii Represent a Potent Anti-HIV Activity Through High-Affinity Binding to the Viral Envelope Glycoprotein gp120
    Hirayama, Makoto
    Shibata, Hiromi
    Imamura, Koji
    Sakaguchi, Takemasa
    Hori, Kanji
    MARINE BIOTECHNOLOGY, 2016, 18 (02) : 215 - 231
  • [4] High-Mannose Specific Lectin and Its Recombinants from a Carrageenophyta Kappaphycus alvarezii Represent a Potent Anti-HIV Activity Through High-Affinity Binding to the Viral Envelope Glycoprotein gp120
    Hirayama, Makoto
    Shibata, Hiromi
    Imamura, Koji
    Sakaguchi, Takemasa
    Hori, Kanji
    MARINE BIOTECHNOLOGY, 2016, 18 (01) : 144 - 160
  • [5] Entry Inhibition of Influenza Viruses with High Mannose Binding Lectin ESA-2 from the Red Alga Eucheuma serra through the Recognition of Viral Hemagglutinin
    Sato, Yuichiro
    Morimoto, Kinjiro
    Kubo, Takanori
    Sakaguchi, Takemasa
    Nishizono, Akira
    Hirayama, Makoto
    Hori, Kanji
    MARINE DRUGS, 2015, 13 (06): : 3454 - 3465
  • [6] High Mannose-binding Lectin with Preference for the Cluster of α1-2-Mannose from the Green Alga Boodlea coacta Is a Potent Entry Inhibitor of HIV-1 and Influenza Viruses
    Sato, Yuichiro
    Hirayama, Makoto
    Morimoto, Kinjiro
    Yamamoto, Naoki
    Okuyama, Satomi
    Hori, Kanji
    JOURNAL OF BIOLOGICAL CHEMISTRY, 2011, 286 (22) : 19446 - 19458