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Dive into the research topics where Roland Heckendorn is active.

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Featured researches published by Roland Heckendorn.


Neuropharmacology | 1999

2-Methyl-6-(phenylethynyl)-pyridine (MPEP), a potent, selective and systemically active mGlu5 receptor antagonist.

Fabrizio Gasparini; Kurt Lingenhöhl; Natacha Stoehr; Peter J. Flor; Micheline Heinrich; Ivo Vranesic; Michel Biollaz; Hans Allgeier; Roland Heckendorn; Stephan Urwyler; Mark A. Varney; Edwin C. Johnson; Stephen D. Hess; Sara P. Rao; Aida I. Sacaan; Emily M. Santori; Gönül Veliçelebi; Rainer Kuhn

In the present paper we describe 2-methyl-6-(phenylethynyl)-pyridine (MPEP) as a potent, selective and systemically active antagonist for the metabotropic glutamate receptor subtype 5 (mGlu5). At the human mGlu5a receptor expressed in recombinant cells, MPEP completely inhibited quisqualate-stimulated phosphoinositide (PI) hydrolysis with an IC50 value of 36 nM while having no agonist or antagonist activities at cells expressing the human mGlu1b receptor at concentrations up to 30 microM. When tested at group II and III receptors, MPEP did not show agonist or antagonist activity at 100 microM on human mGlu2, -3, -4a, -7b, and -8a receptors nor at 10 microM on the human mGlu6 receptor. Electrophysiological recordings in Xenopus laevis oocytes demonstrated no significant effect at 100 microM on human NMDA (NMDA1A/2A), rat AMPA (Glu3-(flop)) and human kainate (Glu6-(IYQ)) receptor subtypes nor at 10 microM on the human NMDA1A/2B receptor. In rat neonatal brain slices, MPEP inhibited DHPG-stimulated PI hydrolysis with a potency and selectivity similar to that observed on human mGlu receptors. Furthermore, in extracellular recordings in the CA1 area of the hippocampus in anesthetized rats, the microiontophoretic application of DHPG induced neuronal firing that was blocked when MPEP was administered by iontophoretic or intravenous routes. Excitations induced by microiontophoretic application of AMPA were not affected.


Journal of Biological Chemistry | 1998

Differentiation of glycine antagonist sites of N-methyl-D-aspartate receptor subtypes: Preferential interaction of CGP 61594 with NR1/2B receptors

Michael Honer; Dietmar Benke; Bodo Laube; Jochen Kuhse; Roland Heckendorn; Hans Allgeier; Christof Angst; Hannah Monyer; Peter H. Seeburg; Heinrich Betz; Hanns Möhler

The binding site for the co-agonist glycine onN-methyl-d-aspartate (NMDA) receptors has been mapped to the NR1 subunit whereas binding of the principal agonist glutamate is mediated by the NR2 subunits. Using the novel glycine site antagonist and photoaffinity label CGP 61594, distinct contributions of the NR2 subunit variants to the glycine antagonist binding domains of NMDA receptor subtypes are demonstrated. High affinity sites for CGP 61594 were exclusively displayed by NR1/2B receptors, as shown by their co-distribution with the NR2B subunit, by subunit-selective immunoprecipitation and by functional analysis of NR1/2B receptors expressed in Xenopus oocytes (inhibitory potency, IC50 = 45 ± 11 nm). Other NMDA receptor subtypes are clearly distinguished by reduced inhibitory potencies for CGP 61594, being low for NR1/2A and NR1/2D receptors (IC50 = 430 ± 105 nm and 340 ± 61 nm, respectively) and intermediate for NR1/2C receptors (IC50 = 164 ± 27 nm). Glycine antagonist sites with low and intermediate affinity for [3H]CGP 61594 were detected also in situ by radioligand binding in brain areas predominantly expressing the NR2A and NR2C subunits, respectively. Thus, [3H]CGP 61594 is the first antagonist radioligand that reliably distinguishes the glycine site of NMDA receptor subtypes. [3H]CGP 61594 is a promising tool to identify the NR2 subunit domains that contribute to differential glycine antagonist sites of NMDA receptor subtypes.


Neuropharmacology | 1999

[3H]CGP 61594, the first photoaffinity ligand for the glycine site of NMDA receptors

Dietmar Benke; Michael Honer; Roland Heckendorn; Mario F. Pozza; Hans Allgeier; Christof Angst; Hanns Möhler

Activation of NMDA receptors requires the presence of glycine as a coagonist which binds to a site that is allosterically linked to the glutamate binding site. To identify the protein constituents of the glycine binding site in situ the photoaffinity label [3H]CGP 61594 was synthesized. In reversible binding assays using crude rat brain membranes, [3H]CGP 61594 labeled with high affinity (K(D) = 23 nM) the glycine site of the NMDA receptor. This was evident from the Scatchard analysis, the displacing potencies of various glycine site ligands and the allosteric modulation of [3H]CGP 61594 binding by ligands of the glutamate and polyamine sites. Electrophysiological experiments in a neocortical slice preparation identified CGP 61594 as a glycine antagonist. Upon UV-irradiation, a protein band of 115 kDa was specifically photolabeled by [3H]CGP 61594 in brain membrane preparations. The photolabeled protein was identified as the NR1 subunit of the NMDA receptor by NR1 subunit-specific immunoaffinity chromatography. Thus, [3H]CGP 61594 is the first photoaffinity label for the glycine site of NMDA receptors. It will serve as a tool for the identification of structural elements that are involved in the formation of the glycine binding domain of NMDA receptors in situ and will thereby complement the mutational analysis of recombinant receptors.


Tetrahedron | 1987

Photoreactions of benzonitrile with cyclic enol ethers

Jochen Mattay; Jan Runaink; Roland Heckendorn

Abstract Upon irradiation, cyclic enol ethers such as 1-methoxy-cyclopentene (4) mainly add across the cyano group of benzonitrile (1), under formation of 2-azabutadienes of an imidoester type. This is in agreement with the so-called Δ G-correlation which was reported earlier (ref. 5 and 6). 4-Phenyloxazole (9) is formed from 1 and 1,3-dioxole (5) probably by a similar photochemical process followed by electrocyclic ring opening and hydrolysis. The low yield of the latter photoreaction and the almost exergonic electron transfer between 5 and 1 may point to back electron transfer as the main energy wasting process. From 1 and 2,3-dihydrido-furan (2) only the ortho cycloadduct 6 has been isolated in low yields.


European Journal of Pharmacology | 1993

Photoaffinity labeling of the NMDA receptor

Dietmar Benke; Thomas M. Marti; Roland Heckendorn; Hubert Rehm; Ralf Künzi; Hans Allgeier; Christof Angst; Hanns Möhler

The structure of NMDA receptors in situ has been probed with the novel photoaffinity ligand 125I-CGP 55802A. By covalently linking the radioactive high-affinity photolabel to NMDA receptors in bovine brain we have identified a protein of 175 kDa associated with the binding site for NMDA receptor agonists and competitive antagonists. Based on its molecular size the photolabeled protein is likely to correspond to the NR2A and/or NR2B subunit. The photoaffinity ligand will permit the assessment of regulatory changes in NMDA receptor subunit expression.


Helvetica Chimica Acta | 1980

Synthese von [1,2,4]Triazolo [1,5‐a]chinazolinen. Ableitung der Konformation von Substituenten mit Hilfe der 13C‐NMR.‐Spektroskopie

Roland Heckendorn; Tammo Winkler


Archive | 1991

Unsaturated amino acids

Christof Angst; Derek E. Brundish; John G. Dingwall; Graham E. Fagg; Hans Allgeier; Guido Bold; Rudolf O. Duthaler; Roland Heckendorn; Antonio Togni


Journal of Medicinal Chemistry | 1993

Synthesis and binding properties of 2-amino-5-phosphono-3-pentenoic acid photoaffinity ligands as probes for the glutamate recognition site of the NMDA receptor.

Roland Heckendorn; Hans Allgeier; Jaqueline Baud; Wilfried Gunzenhauser; Christof Angst


Bioorganic & Medicinal Chemistry | 2007

Synthesis and preliminary pharmacological evaluation of the four stereoisomers of (2S)-2-(2' -phosphono -3'-phenylcyclopropyl)glycine, the first class of 3'-substituted transc1' - 2'-2-(2 '-phosphonocyclopropyl)glycines

Maura Marinozzi; Michaela Serpi; Laura Amori; Monica Gavilan Diaz; Gabriele Costantino; Udo Meyer; Peter J. Flor; Fabrizio Gasparini; Roland Heckendorn; Rainer Kuhn; Gianluca Giorgi; Mette Brunsgaard Hermit; Christian Thomsen; Roberto Pellicciari


Helvetica Chimica Acta | 1978

Struktur und Reaktivität eines Triazolobenzodiazepin/Oxalylchlorid‐Addukts

Roland Heckendorn; Andre Gagneux

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Hanns Möhler

École Polytechnique Fédérale de Lausanne

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