BanLec-eGFP Chimera as a Tool for Evaluation of Lectin Binding to High-Mannose Glycans on Microorganisms
Authors
Lopandić, Zorana
Dragačević, Luka

Popović, Dragan M.

Anđelković, Uroš

Minić, Rajna

Gavrović-Jankulović, Marija

Article (Published version)
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Fluorescently labeled lectins are useful tools for in vivo and in vitro studies of the structure and function of tissues and various pathogens such as viruses, bacteria, and fungi. For the evaluation of high-mannose glycans present on various glycoproteins, a three-dimensional (3D) model of the chimera was designed from the crystal structures of recombinant banana lectin (BanLec, Protein Data Bank entry (PDB): 5EXG) and an enhanced green fluorescent protein (eGFP, PDB 4EUL) by applying molecular modeling and molecular mechanics and expressed in Escherichia coli. BanLec-eGFP, produced as a soluble cytosolic protein of about 42 kDa, revealed β-sheets (41%) as the predominant secondary structures, with the emission peak maximum detected at 509 nm (excitation wavelength 488 nm). More than 65% of the primary structure was confirmed by mass spectrometry. Competitive BanLec-eGFP binding to high mannose glycans of the influenza vaccine (Vaxigrip®) was shown in a fluorescence-linked lectin sorb...ent assay (FLLSA) with monosaccharides (mannose and glucose) and wild type BanLec and H84T BanLec mutant. BanLec-eGFP exhibited binding to mannose residues on different strains of Salmonella in flow cytometry, with especially pronounced binding to a Salmonella Typhi clinical isolate. BanLec-eGFP can be a useful tool for screening high-mannose glycosylation sites on different microorganisms.
Keywords:
Banana lectin / EGFP / Florescence-linked lectin sorbent assay / Fluorescence / Influenza vaccine / Salmonella strains / Viral glycoproteins / enhanced green fluorescent protein / glycoprotein / hemagglutin / influenza vaccine / amino acid sequence / antigen binding / Article / binding affinity / binding site / biotinylation / circular dichroism / controlled study / crystal structure / enzymatic assay / epitope mapping / Escherichia coli / low cytometry / fluorescence linked lectin sorbent assay / glycosylation / human / human cell / IC50 / immunoblotting / in vitro study / ion exchange chromatography / lectin binding / mass spectrometry / molecular mechanics / molecular model / nucleotide sequence / protein protein interaction / protein purification / protein structure / Salmonella enterica serovar Typhi / structure activity relation / structure analysis / surface plasmon resonance / X ray crystallographySource:
Biomolecules, 2021, 11, 2, 180-Publisher:
- MDPI
Funding / projects:
- The bilateral scientific project financed by Ministries of Sciences of Croatia and Serbia
- Ministry of Education, Science and Technological Development, Republic of Serbia, Grant no. 200168 (University of Belgrade, Faculty of Chemistry) (RS-200168)
- Ministry of Education, Science and Technological Development, Republic of Serbia, Grant no. 200177 (Immunology Research Centre 'Branislav Janković' Torlak, Belgrade) (RS-200177)
- Ministry of Education, Science and Technological Development, Republic of Serbia, Grant no. 200026 (University of Belgrade, Institute of Chemistry, Technology and Metallurgy - IChTM) (RS-200026)
DOI: 10.3390/biom11020180
ISSN: 2218-273X
PubMed: 33525574
WoS: 000622122600001
Scopus: 2-s2.0-85099852243
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IHTMTY - JOUR AU - Lopandić, Zorana AU - Dragačević, Luka AU - Popović, Dragan M. AU - Anđelković, Uroš AU - Minić, Rajna AU - Gavrović-Jankulović, Marija PY - 2021 UR - https://cer.ihtm.bg.ac.rs/handle/123456789/4629 AB - Fluorescently labeled lectins are useful tools for in vivo and in vitro studies of the structure and function of tissues and various pathogens such as viruses, bacteria, and fungi. For the evaluation of high-mannose glycans present on various glycoproteins, a three-dimensional (3D) model of the chimera was designed from the crystal structures of recombinant banana lectin (BanLec, Protein Data Bank entry (PDB): 5EXG) and an enhanced green fluorescent protein (eGFP, PDB 4EUL) by applying molecular modeling and molecular mechanics and expressed in Escherichia coli. BanLec-eGFP, produced as a soluble cytosolic protein of about 42 kDa, revealed β-sheets (41%) as the predominant secondary structures, with the emission peak maximum detected at 509 nm (excitation wavelength 488 nm). More than 65% of the primary structure was confirmed by mass spectrometry. Competitive BanLec-eGFP binding to high mannose glycans of the influenza vaccine (Vaxigrip®) was shown in a fluorescence-linked lectin sorbent assay (FLLSA) with monosaccharides (mannose and glucose) and wild type BanLec and H84T BanLec mutant. BanLec-eGFP exhibited binding to mannose residues on different strains of Salmonella in flow cytometry, with especially pronounced binding to a Salmonella Typhi clinical isolate. BanLec-eGFP can be a useful tool for screening high-mannose glycosylation sites on different microorganisms. PB - MDPI T2 - Biomolecules T1 - BanLec-eGFP Chimera as a Tool for Evaluation of Lectin Binding to High-Mannose Glycans on Microorganisms VL - 11 IS - 2 SP - 180 DO - 10.3390/biom11020180 ER -
@article{ author = "Lopandić, Zorana and Dragačević, Luka and Popović, Dragan M. and Anđelković, Uroš and Minić, Rajna and Gavrović-Jankulović, Marija", year = "2021", abstract = "Fluorescently labeled lectins are useful tools for in vivo and in vitro studies of the structure and function of tissues and various pathogens such as viruses, bacteria, and fungi. For the evaluation of high-mannose glycans present on various glycoproteins, a three-dimensional (3D) model of the chimera was designed from the crystal structures of recombinant banana lectin (BanLec, Protein Data Bank entry (PDB): 5EXG) and an enhanced green fluorescent protein (eGFP, PDB 4EUL) by applying molecular modeling and molecular mechanics and expressed in Escherichia coli. BanLec-eGFP, produced as a soluble cytosolic protein of about 42 kDa, revealed β-sheets (41%) as the predominant secondary structures, with the emission peak maximum detected at 509 nm (excitation wavelength 488 nm). More than 65% of the primary structure was confirmed by mass spectrometry. Competitive BanLec-eGFP binding to high mannose glycans of the influenza vaccine (Vaxigrip®) was shown in a fluorescence-linked lectin sorbent assay (FLLSA) with monosaccharides (mannose and glucose) and wild type BanLec and H84T BanLec mutant. BanLec-eGFP exhibited binding to mannose residues on different strains of Salmonella in flow cytometry, with especially pronounced binding to a Salmonella Typhi clinical isolate. BanLec-eGFP can be a useful tool for screening high-mannose glycosylation sites on different microorganisms.", publisher = "MDPI", journal = "Biomolecules", title = "BanLec-eGFP Chimera as a Tool for Evaluation of Lectin Binding to High-Mannose Glycans on Microorganisms", volume = "11", number = "2", pages = "180", doi = "10.3390/biom11020180" }
Lopandić, Z., Dragačević, L., Popović, D. M., Anđelković, U., Minić, R.,& Gavrović-Jankulović, M.. (2021). BanLec-eGFP Chimera as a Tool for Evaluation of Lectin Binding to High-Mannose Glycans on Microorganisms. in Biomolecules MDPI., 11(2), 180. https://doi.org/10.3390/biom11020180
Lopandić Z, Dragačević L, Popović DM, Anđelković U, Minić R, Gavrović-Jankulović M. BanLec-eGFP Chimera as a Tool for Evaluation of Lectin Binding to High-Mannose Glycans on Microorganisms. in Biomolecules. 2021;11(2):180. doi:10.3390/biom11020180 .
Lopandić, Zorana, Dragačević, Luka, Popović, Dragan M., Anđelković, Uroš, Minić, Rajna, Gavrović-Jankulović, Marija, "BanLec-eGFP Chimera as a Tool for Evaluation of Lectin Binding to High-Mannose Glycans on Microorganisms" in Biomolecules, 11, no. 2 (2021):180, https://doi.org/10.3390/biom11020180 . .
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