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Dive into the research topics where Jos Van den Begin is active.

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Featured researches published by Jos Van den Begin.


Nature Chemical Biology | 2012

Fluorescent castasterone reveals BRI1 signaling from the plasma membrane

Niloufer G. Irani; Simone Di Rubbo; Evelien Mylle; Jos Van den Begin; Joanna Schneider-Pizoń; Jaroslava Hniliková; Miroslav Šíša; Dieter Buyst; Josep Vilarrasa-Blasi; Anna-Mária Szatmári; Daniël Van Damme; Kiril Mishev; Mirela-Corina Codreanu; Ladislav Kohout; Miroslav Strnad; Ana I. Caño-Delgado; Jiří Friml; Annemieke Madder; Eugenia Russinova

Receptor-mediated endocytosis is an integral part of signal transduction as it mediates signal attenuation and provides spatial and temporal dimensions to signaling events. One of the best-studied leucine-rich repeat receptor-like kinases in plants, BRASSINOSTEROID INSENSITIVE 1 (BRI1), perceives its ligand, the brassinosteroid (BR) hormone, at the cell surface and is constitutively endocytosed. However, the importance of endocytosis for BR signaling remains unclear. Here we developed a bioactive, fluorescent BR analog, Alexa Fluor 647-castasterone (AFCS), and visualized the endocytosis of BRI1-AFCS complexes in living Arabidopsis thaliana cells. Impairment of endocytosis dependent on clathrin and the guanine nucleotide exchange factor for ARF GTPases (ARF-GEF) GNOM enhanced BR signaling by retaining active BRI1-ligand complexes at the plasma membrane. Increasing the trans-Golgi network/early endosome pool of BRI1-BR complexes did not affect BR signaling. Our findings provide what is to our knowledge the first visualization of receptor-ligand complexes in plants and reveal clathrin- and ARF-GEF-dependent endocytic regulation of BR signaling from the plasma membrane.


Proceedings of the National Academy of Sciences of the United States of America | 2016

Danger-associated peptide signaling in Arabidopsis requires clathrin

Fausto Andres Ortiz-Morea; Daniel V. Savatin; Wim Dejonghe; Rahul Kumar; Yu Luo; Maciej Adamowski; Jos Van den Begin; Keini Dressano; Guilherme Pereira de Oliveira; Xiuyang Zhao; Qing Lu; Annemieke Madder; Jiří Friml; Daniel S. Moura; Eugenia Russinova

Significance Plant endogenous molecules, such as the Arabidopsis thaliana elicitor peptides (AtPeps), activate defense responses by means of cell surface-located receptors that serve as an excellent model to study the implications of endomembrane trafficking in plant immunity. Here we used fluorescently labeled and bioactive pep1 to probe in vivo the intracellular dynamics and the fate of the active receptor-ligand complexes in the Arabidopsis root meristem. We show that AtPep1 internalization depends on its receptors and that clathrin-mediated endocytosis is essential for AtPep1-induced responses. The Arabidopsis thaliana endogenous elicitor peptides (AtPeps) are released into the apoplast after cellular damage caused by pathogens or wounding to induce innate immunity by direct binding to the membrane-localized leucine-rich repeat receptor kinases, PEP RECEPTOR1 (PEPR1) and PEPR2. Although the PEPR-mediated signaling components and responses have been studied extensively, the contributions of the subcellular localization and dynamics of the active PEPRs remain largely unknown. We used live-cell imaging of the fluorescently labeled and bioactive pep1 to visualize the intracellular behavior of the PEPRs in the Arabidopsis root meristem. We found that AtPep1 decorated the plasma membrane (PM) in a receptor-dependent manner and cointernalized with PEPRs. Trafficking of the AtPep1-PEPR1 complexes to the vacuole required neither the trans-Golgi network/early endosome (TGN/EE)-localized vacuolar H+-ATPase activity nor the function of the brefeldin A-sensitive ADP-ribosylation factor-guanine exchange factors (ARF-GEFs). In addition, AtPep1 and different TGN/EE markers colocalized only rarely, implying that the intracellular route of this receptor–ligand pair is largely independent of the TGN/EE. Inducible overexpression of the Arabidopsis clathrin coat disassembly factor, Auxilin2, which inhibits clathrin-mediated endocytosis (CME), impaired the AtPep1-PEPR1 internalization and compromised AtPep1-mediated responses. Our results show that clathrin function at the PM is required to induce plant defense responses, likely through CME of cell surface-located signaling components.


Chemistry: A European Journal | 2014

Rapid total synthesis of cyclic lipodepsipeptides as a premise to investigate their self-assembly and biological activity.

Matthias De Vleeschouwer; Davy Sinnaeve; Jos Van den Begin; Tom Coenye; José Martins; Annemieke Madder

A rapid and efficient total synthesis is reported for the cyclic lipodepsipeptide pseudodesmin A. This member of the Pseudomonas viscosin group is active against Gram-positive bacteria and features self-assembling properties. A conserved serine residue within the lactone macrocycle is exploited for initial immobilization on 2-chlorotrityl chloride resin through ether formation with the side-chain alcohol. Subsequent elongation proceeds through Fmoc solid-phase peptide synthesis, including automated incorporation of the enantioselectively synthesized (R)-3-hydroxydecanoic acid lipid tail. Following esterification to generate the incipient lactone bond, the macrocycle is formed by on-resin head-to-tail macrolactamization and cleaved from the resin to give the desired compound in good purity. The short and efficient synthesis route allows rapid generation of analogues by facile variation of both the peptide and lipid moieties with good control of epimerization while maximizing automation. Synthesis of the pseudodesmin A enantiomer yields identical self-assembly and biological activity to that observed for the natural compound, showing that activity is not mediated by chiral interactions. A D-Asn8 analogue developed en route retains self-assembly, but loses activity. The synthesis strategy should be generally applicable for the rapid generation of analogues from various cyclic lipodepsipeptide groups, allowing an investigation of their self-assembling properties and structure-activity relationships.


Nucleic Acids Research | 2015

Identification of a pKa-regulating motif stabilizing imidazole-modified double-stranded DNA

Dieter Buyst; Vicky Gheerardijn; Krisztina Fehér; Björn Van Gasse; Jos Van den Begin; José Martins; Annemieke Madder

The predictable 3D structure of double-stranded DNA renders it ideally suited as a template for the bottom-up design of functionalized nucleic acid-based active sites. We here explore the use of a 14mer DNA duplex as a scaffold for the precise and predictable positioning of catalytic functionalities. Given the ubiquitous participation of the histidine-based imidazole group in protein recognition and catalysis events, single histidine-like modified duplexes were investigated. Tethering histamine to the C5 of the thymine base via an amide bond, allows the flexible positioning of the imidazole function in the major groove. The mutual interactions between the imidazole and the duplex and its influence on the imidazolium pKaH are investigated by placing a single modified thymine at four different positions in the center of the 14mer double helix. Using NMR and unrestrained molecular dynamics, a structural motif involving the formation of a hydrogen bond between the imidazole and the Hoogsteen side of the guanine bases of two neighboring GC base pairs is established. The motif contributes to a stabilization against thermal melting of 6°C and is key in modulating the pKaH of the imidazolium group. The general features, prerequisites and generic character of the new pKaH-regulating motif are described.


Beilstein Journal of Organic Chemistry | 2014

Versatile synthesis of amino acid functionalized nucleosides via a domino carboxamidation reaction

Vicky Gheerardijn; Jos Van den Begin; Annemieke Madder

Summary Functionalized oligonucleotides have recently gained increased attention for incorporation in modified nucleic acid structures both for the design of aptamers with enhanced binding properties as well as the construction of catalytic DNA and RNA. As a shortcut alternative to the incorporation of multiple modified residues, each bearing one extra functional group, we present here a straightforward method for direct linking of functionalized amino acids to the nucleoside base, thus equipping the nucleoside with two extra functionalities at once. As a proof of principle, we have introduced three amino acids with functional groups frequently used as key-intermediates in DNA- and RNAzymes via an efficient and straightforward domino carboxamidation reaction.


Brassinosteroids : methods and protocols | 2017

Synthetic Protocol for AFCS: A Biologically Active Fluorescent Castasterone Analog Conjugated to an Alexa Fluor 647 Dye

Johan M. Winne; Niloufer G. Irani; Jos Van den Begin; Annemieke Madder

Synthetic derivatization of hormonally active brassinosteroids (BRs) can provide useful small molecule tools to probe BR signaling pathways, such as fluorescent analogs. However, most biologically active BRs are not suitable for direct chemical conjugation techniques because their derivatization typically requires extensive synthetic work and chemistry expertise. Here, we describe an operationally simple, two-step procedure to prepare and purify an Alexa Fluor 647-castasterone (AFCS) from commercially available materials. The reported strategy is also amenable to the introduction of various other amine-based labeling groups.


Journal of Peptide Science | 2012

Towards the efficient synthesis of pseudodesmin A analogues to investigate supramolecular structure function relationship in lipodepsipeptides

Matthias De Vleeschouwer; Jos Van den Begin; Davy Sinnaeve; José Martins; Annemieke Madder

Reference EPFL-CONF-184380doi:10.1002/psc.2449View record in Web of Science Record created on 2013-02-27, modified on 2017-05-12No abstract is available for this article.


Journal of the American Chemical Society | 2016

Automated Synthesis of Monodisperse Oligomers, Featuring Sequence Control and Tailored Functionalization

Steven Martens; Jos Van den Begin; Annemieke Madder; Filip Du Prez; Pieter Espeel


publisher | None

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Young Belgian Magnetic Resonance Scientist, 13th Symposium, Abstracts | 2014

Identification of a pKa-regulating motif stabilizing imidazole modified double stranded DNA

Dieter Buyst; Vicky Gheerardijn; Krisztina Fehér; Björn Van Gasse; Jos Van den Begin; José Martins; Annemieke Madder

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