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1.
FEBS J ; 288(4): 1343-1365, 2021 02.
Article in English | MEDLINE | ID: mdl-32559333

ABSTRACT

O-methylation is an unusual sugar modification with a function that is not fully understood. Given its occurrence and recognition by lectins involved in the immune response, methylated sugars were proposed to represent a conserved pathogen-associated molecular pattern. We describe the interaction of O-methylated saccharides with two ß-propeller lectins, the newly described PLL2 from the entomopathogenic bacterium Photorhabdus laumondii, and its homologue PHL from the related human pathogen Photorhabdus asymbiotica. The crystal structures of PLL2 and PHL revealed up to 10 out of 14 potential binding sites per protein subunit to be occupied with O-methylated structures. The avidity effect strengthens the interaction by 4 orders of magnitude. PLL2 and PHL also interfere with the early immune response by modulating the production of reactive oxygen species and phenoloxidase activity. Since bacteria from Photorhabdus spp. have a complex life cycle involving pathogenicity towards different hosts, the involvement of PLL2 and PHL might contribute to the pathogen overcoming insect and human immune system defences in the early stages of infection. DATABASES: Structural data are available in PDB database under the accession numbers 6RG2, 6RGG, 6RFZ, 6RG1, 6RGU, 6RGW, 6RGJ, and 6RGR.


Subject(s)
Bacterial Proteins/metabolism , Gram-Negative Bacterial Infections/metabolism , Immune System/metabolism , Lectins/metabolism , Photorhabdus/metabolism , Sugars/metabolism , Animals , Bacterial Proteins/chemistry , Gram-Negative Bacterial Infections/immunology , Gram-Negative Bacterial Infections/microbiology , Hemocytes/immunology , Hemocytes/metabolism , Hemolymph/immunology , Hemolymph/metabolism , Host-Pathogen Interactions/immunology , Humans , Immune System/immunology , Immunity/immunology , Lectins/chemistry , Methylation , Moths , Photorhabdus/immunology , Photorhabdus/physiology
2.
Molecules ; 24(24)2019 Dec 11.
Article in English | MEDLINE | ID: mdl-31835851

ABSTRACT

The Photorhabdus species is a Gram-negative bacteria of the family Morganellaceae that is known for its mutualistic relationship with Heterorhabditis nematodes and pathogenicity toward insects. This study is focused on the characterization of the recombinant lectin PLL3 with an origin in P. laumondii subsp. laumondii. PLL3 belongs to the PLL family of lectins with a seven-bladed ß-propeller fold. The binding properties of PLL3 were tested by hemagglutination assay, glycan array, isothermal titration calorimetry, and surface plasmon resonance, and its structure was determined by X-ray crystallography. Obtained data revealed that PLL3 binds similar carbohydrates to those that the other PLL family members bind, with some differences in the binding properties. PLL3 exhibited the highest affinity toward l-fucose and its derivatives but was also able to interact with O-methylated glycans and other ligands. Unlike the other members of this family, PLL3 was discovered to be a monomer, which might correspond to a weaker avidity effect compared to homologous lectins. Based on the similarity to the related lectins and their proposed biological function, PLL3 might accompany them during the interaction of P. laumondii with both the nematode partner and the insect host.


Subject(s)
Lectins/chemistry , Lectins/metabolism , Photorhabdus/metabolism , Bacterial Proteins/chemistry , Bacterial Proteins/genetics , Bacterial Proteins/metabolism , Binding Sites , Calorimetry , Crystallography, X-Ray , Fructose/metabolism , Lectins/genetics , Protein Structure, Secondary , Recombinant Proteins/chemistry , Recombinant Proteins/metabolism , Surface Plasmon Resonance
3.
Carbohydr Res ; 437: 28-35, 2017 Jan 02.
Article in English | MEDLINE | ID: mdl-27883907

ABSTRACT

Changes in concentration (0.001-0.1 M) of an arabinofuranosyl donor (1) have been shown to modulate the temperature T at which activation of 1 occurs (from -23 °C to +7 °C), the reaction time (from 1.5 h to 3 days) and the yield of the disaccharide formed (from 14% to 82%). At concentrations exceeding 0.01 M, these parameters, as well as the specific optical rotation of the solution of 1, virtually do not depend on concentration suggesting formation of reacting species (supramers) of glycosyl donor with similar structures, hence reactivities, but considerably different from those formed in more dilute solutions. The found critical concentration (0.01 M) separates two concentration ranges of reaction solutions corresponding to two types of solution structure that are featured by the presence of fundamentally different supramers of glycosyl donor, which have distinct chemical properties. These results allow a fresh look at the problems of reactivity of chemical compounds and selectivity of the reactions in which they participate.


Subject(s)
Arabinose/analogs & derivatives , Carbohydrate Biochemistry/methods , Glycosylation , Arabinose/chemistry , Carbohydrate Conformation , Disaccharides/chemistry , Solutions , Temperature
4.
Carbohydr Res ; 396: 25-36, 2014 Sep 19.
Article in English | MEDLINE | ID: mdl-25079596

ABSTRACT

The influence of O-trifluoroacetyl (TFA) groups at different positions of thioglycoside glycosyl donors on stereoselectivity of α-arabinofuranosylation leading to corresponding disaccharides was studied. It was shown that TFA group in thioglycoside glycosyl donors, when combined with 2-O-(triisopropylsilyl) (TIPS) non-participating group, may be regarded as an electron-withdrawing protecting group that may enhance 1,2-cis-selectivity in arabinofuranosylation, the results strongly depending on the nature of glycosyl acceptor. The reactivities of the glycosyl donors were compared with those of a similar thioglycoside with O-pentafluoropropionyl groups and the known phenyl 3,5-O-(di-tert-butylsilylene)-1-thio-α-d-arabinofuranosides with 2-O-TIPS and 2-O-benzyl groups. The 'matching' in the donor-acceptor combination was found to be critical for achieving both high reactivity of glycosyl donor and ß-stereoselectivity of arabinofuranosylation. The use of glycosyl donors with TFA and silyl protection may be useful in the realization of the benzyl-free approach to oligoarabinofuranosides with azido group in aglycon-convenient building blocks for the preparation of neoglycoconjugates.


Subject(s)
Arabinose/analogs & derivatives , Disaccharides/chemical synthesis , Fluoroacetates/chemistry , Arabinose/chemistry , Glycosylation , Stereoisomerism
5.
Carbohydr Res ; 357: 62-7, 2012 Aug 01.
Article in English | MEDLINE | ID: mdl-22704193

ABSTRACT

Branched arabinofuranose pentasaccharide with 2-azidoethyl aglycon was prepared for the first time by [3+1+1] bis-(1,2-cis)-glycosylation of trisaccharide diol with silyl-protected thioglycoside glycosyl donor. The presence of 2-azidoethyl aglycon would enable the preparation of neoglycoconjugates using the click chemistry approaches.


Subject(s)
Arabinose/analogs & derivatives , Azides/chemical synthesis , Cell Wall/chemistry , Mycobacterium tuberculosis/chemistry , Oligosaccharides, Branched-Chain/chemical synthesis , Polysaccharides/chemical synthesis , Arabinose/chemical synthesis , Arabinose/chemistry , Azides/chemistry , Carbohydrate Conformation , Carbohydrate Sequence , Glycosylation , Magnetic Resonance Spectroscopy , Molecular Sequence Data , Oligosaccharides, Branched-Chain/chemistry , Polysaccharides/chemistry
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