TY - JOUR A1 - Zaitseva, Olena A1 - Anany, Mohamed A1 - Wajant, Harald A1 - Lang, Isabell T1 - Basic characterization of antibodies targeting receptors of the tumor necrosis factor receptor superfamily JF - Frontiers in Immunology N2 - Many new immunotherapeutic approaches aim on the stimulatory targeting of receptors of the tumor necrosis factor (TNF) receptor superfamily (TNFRSF) using antibodies with intrinsic or conditional agonism. There is an initial need to characterize corresponding TNFRSF receptor (TNFR)-targeting antibodies with respect to affinity, ligand binding, receptor activation and the epitope recognized. Here, we report a collection of simple and matched protocols enabling the detailed investigation of these aspects by help of Gaussia princeps luciferase (GpL) fusion proteins and analysis of interleukin-8 (IL8) production as an easily measurable readout of TNFR activation. In a first step, the antibodies and antibody variants of interest are transiently expressed in human embryonal kidney 293 cells, either in non-modified form or as fusion proteins with GpL as a reporter domain. The supernatants containing the antibody-GpL fusion proteins can then be used without further purification in cell-free and/or cellular binding studies to determine affinity. Similarly, binding studies with mutated TNFR variants enable the characterization of the antibody binding site within the TNFR ectodomain. Furthermore, in cellular binding studies with GpL fusion proteins of soluble TNFL molecules, the ability of the non-modified antibody variants to interfere with TNFL-TNFR interaction can be analyzed. Last but not least, we describe a protocol to determine the intrinsic and the Fc gamma receptor (FcγR)-dependent agonism of anti-TNFR antibodies which exploits i) the capability of TNFRs to trigger IL8 production in tumor cell lines lacking expression of FcγRs and ii) vector- and FcγR-transfected cells, which produce no or only very low amounts of human IL8. The presented protocols only require standard molecular biological equipment, eukaryotic cell culture and plate readers for the quantification of luminescent and colorimetric signals. KW - affinity KW - agonism KW - antibody KW - FcγR KW - Gaussia princeps luciferase (GpL) KW - immunotherapy KW - TNF receptor superfamily Y1 - 2023 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-311407 VL - 14 ER - TY - THES A1 - Lu, Yunzhi T1 - Kinetics of mouse and human muscle type nicotinic receptor channels T1 - Kinetik muriner und humaner nikotinischer Rezeptorkanäle vom Muskeltyp N2 - Acetylcholine (ACh) mediates transmission at vertebrate neuromuscular junctions and many other synapses. The postsynaptic ACh receptors at neuromuscular junctions are of the nicotinic subtype (nAChRs). They are among the best studied receptor channels and often serve as models or receptor prototypes. Despite a wealth of information on muscle type nAChRs so far little is known about species specific functional differences. In this work, mouse and human adult muscle type nAChRs are investigated. Cell attached recordings in the HEK293T heterologous expression system provided evidence that the ACh affinity of recombinant mouse and human adult muscle type nAChRs are different. To clarify this, I compared these receptors in outside-out patches employing a system for fast agonist application. Thus, the individual membrane patches with receptors can be exposed to various ligand concentrations. In response to 10 and 30 µM ACh normalized peak currents (î) were significantly larger and current rise-time (tr) shorter in human than in mouse receptors. Analyzing dose-response curves of î and tr and fitting them with a two-step equivalent binding-site kinetic mechanism revealed a two-fold higher ACh association rate constant in human compared to mouse receptors. Furthermore, human nAChRs were blocked faster in outside-out patches by superfusion of 300 nM α-Bungarotoxin (α-Bgtx) than mouse nAChRs. Finally, human nAChRs in outside-out patches showed higher affinity at 3 µM ACh than chimeric receptors consisting of mouse α- and human β-, γ- and ε-subunits. The higher affinity of human than mouse receptors for ACh and α-Bgtx is thus at least in part due to sequence difference in their α-subunits. N2 - Acetylcholin (ACh) vermittelt Erregungsübertragung an neuromuskulären synaptischen Kontakten (neuromuscular junction, NMJ) von Wirbeltieren und vielen anderen Synapsen. Die postsynaptischen ACh-Rezeptoren an der NMJ sind vom nikotinischen Subtyp (nAChRs). Als Teil der am besten erforschten Kanalrezeptoren dienen sie oft als Modelle oder auch Prototypen für Rezeptoren. Trotz einer Fülle an Informationen über nAChRs des Muskeltyps ist bis heute recht wenig über artenspezifischen funktionellen Unterschiede bekannt. Diese Studie befasst sich daher mit der Untersuchung von nAChRs des Muskeltyps in erwachsenen Mäusen und Menschen. Aufzeichnungen mit sogenannten Cell-attached Patches im heterologen Expressionssystem HEK293T-Zellen lieferten Beweise dafür, dass die ACh-Affinität von rekombinanten erwachsenen Maus- und menschlichen nAChRs vom Muskeltyp unterschiedlich sind. Um diesem nachzugehen, habe ich diese Rezeptoren in Outside-out Patches mit Hilfe eines schnellen Piezogetriebenen Applikationssystems verglichen. Dieses System bietet den Vorteil, dass einzelne Membran-Patches mit Rezeptoren unterschiedlichen Ligandenkonzentrationen ausgesetzt werden können. Als Reaktion auf 10 und 30 µM ACh waren die normalisierten Stromamplituden (î) und Stromanstiegszeiten (tr) der menschlichen Rezeptoren signifikant höher als die der Mausrezeptoren. Die Analyse der Dosis-Wirkungskurven von î und tr sowie die Anpassung eines quantitativen zweistufigen kinetischen Modells mit zwei äquivalenten Bindestellen an die Datensätze zeigten eine zweifach höhere Assoziationsrate für ACh bei menschlichen Rezeptoren, verglichen mit der von Mausrezeptoren. Zudem wurden menschliche nAChRs in Outside-Out-Patches schneller als Mausrezeptoren durch Superfusion mit 300 nM α-Bungarotoxin (α-Bgtx) blockiert, was für eine höhere Affinität auch für α-Bgtx spricht. Schließlich wiesen die menschlichen nAChRs in Outside-Out-Patches bei 3 µM ACh eine höhere Affinität als chimäre Rezeptoren aus Maus α- und menschlichen β-, γ- and ε-Untereinheiten auf. Die höhere Affinität der menschlichen Rezeptoren zu ACh und α-Bgtx im Vergleich zu Mausrezeptoren basiert somit zumindest in Teilen auf Sequenzdifferenzen ihrer α-Einheitenen. KW - nicotinic acetylcholine receptor KW - affinity KW - kinetic mechanism KW - Nicotinischer Acetylcholinrezeptor KW - Muskelzelle KW - Maus KW - Mensch Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-192688 ER - TY - JOUR A1 - Zhang, Nan A1 - Van Crombruggen, Koen A1 - Holtappels, Gabriele A1 - Lan, Feng A1 - Katotomichelakis, Michail A1 - Zhang, Luo A1 - Högger, Petra A1 - Bachert, Claus T1 - Suppression of Cytokine Release by Fluticasone Furoate vs. Mometasone Furoate in Human Nasal Tissue Ex-Vivo JF - PLOS ONE N2 - Background: Topical glucocorticosteroids are the first line therapy for airway inflammation. Modern compounds with higher efficacy have been developed, but head-to-head comparison studies are sparse. Objective: To compare the activity of two intranasal glucocorticoids, fluticasone furoate (FF) and mometasone furoate (MF) with respect to the inhibition of T helper (Th)1, Th2 and Th17 cytokine release in airway mucosa. Methods: We used an ex-vivo human nasal mucosal tissue model and employed pre-and post-Staphylococcus aureus enterotoxin B (SEB)-challenge incubations with various time intervals and drug concentrations to mimic typical clinical situations of preventive or therapeutic use. Results: At a fixed concentration of 10(-10) M, FF had significantly higher suppressive effects on interferon (IFN)-gamma,interleukin (IL)-2 and IL-17 release, but not IL-5 or tumor necrosis factor (TNF)-alpha, vs. MF. While the maximal suppressive activity was maintained when FF was added before or after tissue stimulation, the cytokine suppression capacity of MF appeared to be compromised when SEB-induced cell activation preceded the addition of the drug. In a pre-challenge incubation setting with removal of excess drug concentrations, MF approached inhibition of IL-5 and TNF-alpha after 6 and 24 hours while FF maximally blocked the release of these cytokines right after pre-incubation. Furthermore, FF suppressed a wider range of T helper cytokines compared to MF. Conclusion: The study demonstrates the potential of our human mucosal model and shows marked differences in the ability to suppress the release of various cytokines in pre-and post-challenge settings between FF and MF mimicking typical clinical situations of preventive or therapeutic use. KW - allergic rhinitis KW - human receptor kinetics KW - staphylococcus aureus KW - intranasal corticosteroids KW - cells KW - propionate KW - secretion KW - affinity KW - therapy KW - spray Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-116779 VL - 9 IS - 4 ER -