Lüscher, Benjamin P

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Journal Article

Lüscher, Benjamin P; Schoeberlein, Andreina; Surbek, Daniel V; Baumann, Marc U (2022). Hyperuricemia during Pregnancy Leads to a Preeclampsia-Like Phenotype in Mice. Cells, 11(22) MDPI 10.3390/cells11223703

Lüscher, Benjamin P; Baur, Roland; Goeldner, Maurice; Sigel, Erwin (2012). Influence of GABA(A) receptor α subunit isoforms on the benzodiazepine binding site. PLoS ONE, 7(7), e42101. Lawrence, Kans.: Public Library of Science 10.1371/journal.pone.0042101

Kuhn-Nentwig, Lucia; Fedorova, Irina M; Lüscher, Benjamin P; Kopp, Lukas; Trachsel, Christian; Schaller, Johann; Vu Nguyen, Xuan Lan; Seebeck, Thomas; Streitberger, Kathrin; Nentwig, Wolfgang; Sigel, Erwin; Magazanik, Lev G (2012). A venom-derived neurotoxin, CsTx-1, from the spider Cupiennius salei exhibits cytolytic activities. Journal of biological chemistry, 287(30), pp. 25640-25649. Bethesda, Md.: American Society for Biochemistry and Molecular Biology 10.1074/jbc.M112.339051

Sigel, Erwin; Lüscher, Benjamin P (2011). A closer look at the high affinity benzodiazepine binding site on GABAA receptors. Current topics in medicinal chemistry, 11(2), pp. 241-6. Hilversum: Bentham Science Publishers 10.2174/156802611794863562

Baur, Roland; Lüscher, Benjamin P; Richter, Lars; Sigel, Erwin (2010). A residue close to ?1 loop F disrupts modulation of GABAA receptors by benzodiazepines while their binding is maintained. Journal of neurochemistry, 115(6), pp. 1478-85. Oxford: Wiley-Blackwell 10.1111/j.1471-4159.2010.07052.x

Sigel, Erwin; Kaur, Kuldeep H; Lüscher, Benjamin P; Baur, Roland (2009). Use of concatamers to study GABAA receptor architecture and function: application to delta-subunit-containing receptors and possible pitfalls. Biochemical Society transactions, 37(Pt 6), pp. 1338-42. London: Portland Press 10.1042/BST0371338

Baur, Roland; Tan, Kelly R; Lüscher, Benjamin P; Gonthier, Anne; Goeldner, Maurice; Sigel, Erwin (2008). Covalent modification of GABAA receptor isoforms by a diazepam analogue provides evidence for a novel benzodiazepine binding site that prevents modulation by these drugs. Journal of neurochemistry, 106(6), pp. 2353-63. Oxford: Wiley-Blackwell 10.1111/j.1471-4159.2008.05574.x

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