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Dive into the research topics where Ondřej Šulák is active.

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Featured researches published by Ondřej Šulák.


Structure | 2010

A TNF-like Trimeric Lectin Domain from Burkholderia cenocepacia with Specificity for Fucosylated Human Histo-Blood Group Antigens

Ondřej Šulák; Gianluca Cioci; Monia Delia; Martina Lahmann; Annabelle Varrot; Anne Imberty; Michaela Wimmerová

The opportunistic pathogen Burkholderia cenocepacia expresses several soluble lectins, among them BC2L-C. This lectin exhibits two domains: a C-terminal domain with high sequence similarity to the recently described calcium-dependent mannose-binding lectin BC2L-A, and an N-terminal domain of 156 amino acids without similarity to any known protein. The recombinant N-terminal BC2L-C domain is a new lectin with specificity for fucosylated human histo-blood group epitopes H-type 1, Lewis b, and Lewis Y, as determined by glycan array and isothermal titration calorimetry. Methylselenofucoside was used as ligand to solve the crystal structure of the N-terminal BC2L-C domain. Additional molecular modeling studies rationalized the preference for Lewis epitopes. The structure reveals a trimeric jellyroll arrangement with striking similarity to TNF-like proteins, and to BclA, the spore protein from Bacillus anthracis which may play an important role in bioadhesion of anthrax spores in human lungs.


PLOS Pathogens | 2011

Burkholderia Cenocepacia Bc2L-C is a Super Lectin with Dual Specificity and Proinflammatory Activity.

Ondřej Šulák; Gianluca Cioci; Emilie Lameignere; Viviane Balloy; Adam Round; Irina Gutsche; Lenka Malinovská; Paul Kosma; Daniel F. Aubert; Cristina L. Marolda; Miguel A. Valvano; Michaela Wimmerová; Anne Imberty

Lectins and adhesins are involved in bacterial adhesion to host tissues and mucus during early steps of infection. We report the characterization of BC2L-C, a soluble lectin from the opportunistic pathogen Burkholderia cenocepacia, which has two distinct domains with unique specificities and biological activities. The N-terminal domain is a novel TNF-α-like fucose-binding lectin, while the C-terminal part is similar to a superfamily of calcium-dependent bacterial lectins. The C-terminal domain displays specificity for mannose and l-glycero-d-manno-heptose. BC2L-C is therefore a superlectin that binds independently to mannose/heptose glycoconjugates and fucosylated human histo-blood group epitopes. The apo form of the C-terminal domain crystallized as a dimer, and calcium and mannose could be docked in the binding site. The whole lectin is hexameric and the overall structure, determined by electron microscopy and small angle X-ray scattering, reveals a flexible arrangement of three mannose/heptose-specific dimers flanked by two fucose-specific TNF-α-like trimers. We propose that BC2L-C binds to the bacterial surface in a mannose/heptose-dependent manner via the C-terminal domain. The TNF-α-like domain triggers IL-8 production in cultured airway epithelial cells in a carbohydrate-independent manner, and is therefore proposed to play a role in the dysregulated proinflammatory response observed in B. cenocepacia lung infections. The unique architecture of this newly recognized superlectin correlates with multiple functions including bacterial cell cross-linking, adhesion to human epithelia, and stimulation of inflammation.


Collection of Czechoslovak Chemical Communications | 2005

Minimization of adsorption in capillary zone electrophoresis of proteins and neuroprotective peptides

Ondřej Šulák; Miroslava Spanilá; Dagmar Gajdošová; Jiří Pazourek; Josef Havel

Four types of coating procedures suitable for protein and peptides separation: covalent coating using polyethyleneimine (PEI), 3-glycidoxy-propyltrimethoxysilane (GPTMS), 3-aminopropyltriethoxysilane (APS) and a new approach of dynamic coating with linear polyacrylamide (LPA) have been studied. The capillary surface was characterized by determination of the electroosmotic flow (EOF); for optimization a model mixture of proteins (cytochrome C, lysozyme and ribonuclease A) was used. Separation of a neuroprotective peptide [Gly-14]humanin was demonstrated in the optimized system.


Archive | 2017

Crystallization and stability studies of trimeric lectin RS20L from phytopathogen Ralstonia solanacearum

Peter Kyseľ; Nikola Kostlánová; Josef Houser; Eva Dubská; Ondřej Šulák; Michaela Wimmerová


Archive | 2014

Burkholderia cenocepacia lectins and their native ligands

Lenka Malinovská; Ondřej Šulák; Tereza Duranová; Emilie Lameignere; Christian Stanetty; Paul Kosma; Anne Imberty; Michaela Wimmerová


Archive | 2014

Crystallization and functional studies of trimeric lectin RS20Lfrom bacterium Ralstonia solanacearum

Peter Kyseľ; Nikola Kostlánová; Ondřej Šulák; Jan Komárek; Michaela Wimmerová


Archive | 2013

Lectins from Burkholderia cenocepacia - The search for native ligands

Lenka Malinovská; Ondřej Šulák; Lenka Adamová; Emilie Lameignere; Christian Stanetty; Paul Kosma; Anne Imberty; Michaela Wimmerová


Archive | 2013

Lectins from Burkholderia cenocepacia - what do they reallylike?

Lenka Malinovská; Ondřej Šulák; Lenka Adamová; Emilie Lameignere; Anne Imberty; Michaela Wimmerová


Archive | 2012

Lektiny z Burkholderia cenocepacia - když dva (tři, čtyři)dělají totéž...

Lenka Malinovská; Ondřej Šulák; Lenka Adamová; Anne Imberty; Michaela Wimmerová


Archive | 2011

Structure and function of lectins from Burkholderia cenocepacia- similar, yet different

Lenka Malinovská; Ondřej Šulák; Paul Kosma; Anne Imberty; Michaela Wimmerová

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Anne Imberty

Centre national de la recherche scientifique

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Michaela Wimmerová

European Synchrotron Radiation Facility

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Lenka Malinovská

Central European Institute of Technology

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Michaela Wimmerová

European Synchrotron Radiation Facility

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Gianluca Cioci

Joseph Fourier University

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