TY - THES A1 - Rotte, Cathleen T1 - Die neuronale Kontrolle der Speicheldrüse von Periplaneta americana T1 - The neuronal control of the salivary glands of Periplaneta americana N2 - Die acinösen Speicheldrüsen der Schabe Periplaneta americana sind reich durch serotonerge, dopaminerge und GABAerge Fasern innerviert. Die biogenen Amine Serotonin (5-HT) und Dopamin (DA) induzieren die Sekretion eines NaCl-haltigen Primärspeichels. Die physiologische Rolle der GABAergen Innervation des Drüsenkomplexes war bislang unbekannt. Weiterhin wurde vermutet, dass Tyramin (TA) und Octopamin (OA) an der Speichelbildung beteiligt sind. Mittels intrazellulärer Ableitungen von sekretorischen Acinuszellen mit und ohne Stimulierung des Speicheldrüsennervs (SDN) sollte daher die Wirkung von GABA, TA und OA im Speicheldrüsenkomplex untersucht werden. Intrazelluläre Ableitungen aus Acinuszellen zeigten, dass sowohl DA als auch 5 HT biphasische Änderungen des Membranpotentials induzierten. Diese bestanden aus einer initialen Hyperpolarisation und einer darauf folgenden transienten Depolarisation. Stimulierung des SDN mittels einer Saugelektrode verursachte ebenfalls biphasische Änderungen des Membranpotentials der Acinuszellen, die mit den DA- bzw. 5-HT-induzierten Änderungen kinetisch identisch waren. Dieses Ergebnis zeigte, dass die elektrische Stimulierung des SDN im Nerv-Speicheldrüsenpräparat eine verlässliche Methode zur Untersuchung der Wirkungen von Neuromodulatoren auf die dopaminerge und/oder sertotonerge Neurotransmission ist. Die Hyperpolarisation der DA-induzierten Potentialänderungen wurde durch eine intrazelluläre Ca2+-Freisetzung und die Öffnung basolateral lokalisierter Ca2+-gesteuerter K+-Kanäle verur-sacht. Die DA- und 5-HT-induzierte Depolarisation hing kritisch von der Aktivität eines basolateral lokalisierten Na+-K+-2Cl--Symporters ab. GABA, TA und OA potenzierten die elektrischen Antworten der Acinuszellen, wenn diese durch SDN-Stimulierung hervorgerufen wurden. Dabei war OA wirksamer als TA. Dieses Ergebnis zeigte, dass diese Substanzen als im Drüsenkomplex präsynaptisch und erregend als Neuromodulatoren wirken. Pharmakologische Untersuchungen ergaben, dass die erregende Wirkung von GABA durch einen G-Protein-gekoppelten GABAB-Rezeptor vermittelt wurde. Messungen der durch SDN-Stimulierung induzierten Flüssigkeits- und Proteinsekretionsraten zeigten, dass beide Parameter in Anwesenheit von GABA verstärkt waren. Dies ließ auf eine verstärkte serotonerge Neurotransmission schließen, da nur 5-HT die Bildung eines Protein-haltigen Speichels verursacht. Immuncytochemische Untersuchungen zeigten, dass die Drüsen tyraminerge und octopaminerge Innervation empfangen. Weiterhin wurde der erste charakterisierte TA-Rezeptor (PeaTYR1) der Schabe auf einem paarigen, lateral zur Drüse ziehenden Nerv markiert, der auch tyraminerge Fasern enthielt. Die vorliegende Arbeit trug zum Verständnis der komplexen Funktionsweise der Speicheldrüse der Schabe bei und erweiterte das lückenhafte Wissen über die neuronale Kontrolle exokriner Drüsen in Insekten. N2 - The cockroach Periplaneta americana has acinar type salivary glands. The secretory acini consist of P-cells, responsible for electrolyte and water secretion and C-cells that secrete protein into the saliva. Salivation is controlled by the dopaminergic and GABAergic salivary neurons SN1 and SN2, and by several smaller serotonergic neurons. Dopamine (DA) and serotonin (5-HT) induce the secretion of a NaCl-rich saliva. The physiological role of the GABAergic innervation was unknown. Furthermore, the cellular actions of the biogenic amines DA and 5-HT were poorly understood. Based on studies on other insect salivary glands a role for octopamine (OA) and tyramine (TA) acting as neuromodulators was suggested. In this study, intracellular recordings of the basolateral membrane potential of acinar cells were performed to examine direct and modulating actions of the biogenic amines DA, 5-HT, OA, TA and of GABA. A nerve-gland preparation was developed and used to investigate the actions of neuromodulators, namely GABA, OA and TA. DA and 5-HT induced biphasic membrane potential changes, consisting of an initial hyperpolarization and a transient depolarization. The DA-induced hyperpolarization was mediated by intracellular Ca2+-release and subsequent opening of basolateral Ca2+-dependent K+-channels. The DA- and 5-HT-induced depolarization was dependent on the presence of extracellular Na+ and the activity of a basolateral Na+-K+-2Cl--cotransporter. Electrical stimulation of the salivary duct nerve (SDN) by means of a suction electrode induced membrane potential changes with the same kinetics as those induced by bath application of DA and 5-HT. These results suggested that electrical nerve stimulation is a adequate method to investigate presynaptic effects of neuromodulators. GABA, OA and TA affected neither the resting membrane potential of the acinar cells, nor the DA- or 5 HT- induced potential changes. When GABA was applied during SDN-stimulation, it enhanced the amplitudes of the membrane potential changes of the acinar cells as well as fluid- and protein secretion rates of the glands. Pharmacological experiments revealed that the excitatory action of GABA in the gland complex is mediated by a metabotropic GABA receptor (GABAB-type). OA and TA enhanced the membrane potential changes of the acinar cells when these were induced by SDN-stimulation, suggesting presynaptic excitatory roles for both amines in the gland complex. Immunocytochemistry revealed rich innervation of the salivary glands with octopamine- immunoreactive fibers that were also stained by the tyramine-antibody, and with tyramine-immunoreactive fibers lacking octopamine-immunoreactivity. Since the tyramine receptor PeaTYR1 is expressed in the salivary gland complex, its distribution was investigated by using a specific antibody. Immunoreactivity was detected in a paired nerve of unknown root. This nerve innervated only few acini lying in the periphery of the gland complex and contained tyraminergic fibers. This study extends our knowledge about the complex neuronal control and function of insect salivary glands. KW - Schabe KW - Speicheldrüse KW - GABA KW - Octopamin KW - Tyramin KW - cockroach KW - salivary gland KW - biogenic amines KW - acinar cell KW - dopamine Y1 - 2009 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:517-opus-39456 ER - TY - GEN A1 - Blenau, Wolfgang A1 - Rotte, Cathleen A1 - Krach, Christian A1 - Balfanz, Sabine A1 - Baumann, Arnd A1 - Walz, Bernd T1 - Molecular characterization and localization of the first tyramine receptor of the American cockroach (Periplaneta americana) N2 - The phenolamines octopamine and tyramine control, regulate, and modulate many physiological and behavioral processes in invertebrates. Vertebrates possess only small amounts of both substances, and thus, octopamine and tyramine, together with other biogenic amines, are referred to as “trace amines.” Biogenic amines evoke cellular responses by activating G-protein-coupled receptors. We have isolated a complementary DNA (cDNA) that encodes a biogenic amine receptor from the American cockroach Periplaneta americana, viz., Peatyr1, which shares high sequence similarity to members of the invertebrate tyramine-receptor family. The PeaTYR1 receptor was stably expressed in human embryonic kidney (HEK) 293 cells, and its ligand response has been examined. Receptor activation with tyramine reduces adenylyl cyclase activity in a dose-dependent manner (EC50 350 nM). The inhibitory effect of tyramine is abolished by co-incubation with either yohimbine or chlorpromazine. Receptor expression has been investigated by reverse transcription polymerase chain reaction and immunocytochemistry. The mRNA is present in various tissues including brain, salivary glands, midgut, Malpighian tubules, and leg muscles. The effect of tyramine on salivary gland acinar cells has been investigated by intracellular recordings, which have revealed excitatory presynaptic actions of tyramine. This study marks the first comprehensive molecular, pharmacological, and functional characterization of a tyramine receptor in the cockroach. KW - Biogenic amine KW - cellular signaling KW - G-protein-coupled receptor KW - octopamine KW - salivary gland Y1 - 2009 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:517-opus-44335 ER - TY - GEN A1 - Blenau, Wolfgang A1 - Rotte, Cathleen A1 - Witte, Jeannine A1 - Baumann, Otto A1 - Walz, Bernd T1 - Source, topography and excitatory effects of GABAergic innervation in cockroach salivary glands N2 - Cockroach salivary glands are innervated by dopaminergic and serotonergic neurons. Both transmitters elicit saliva secretion. We studied the distribution pattern of neurons containing gamma-aminobutyric acid ( GABA) and their physiological role. Immunofluorescence revealed a GABA-immunoreactive axon that originates within the subesophageal ganglion at the salivary neuron 2 (SN2) and this extends within the salivary duct nerve towards the salivary gland. GABA-positive fibers form a network on most acinar lobules and a dense plexus in the interior of a minor fraction of acinar lobules. Co-staining with anti-synapsin revealed that some putative GABAergic terminals seem to make pre-synaptic contacts with GABA-negative release sites. Many putative GABAergic release sites are at some distance from other synapses and at distance from the acinar tissue. Intracellular recordings from isolated salivary glands have revealed that GABA does not affect the basolateral membrane potential of the acinar cells directly. When applied during salivary duct nerve stimulation, GABA enhances the electrical response of the acinar cells and increases the rates of fluid and protein secretion. The effect on electrical cell responses is mimicked by the GABA(B) receptor agonists baclofen and SKF97541, and blocked by the GABAB receptor antagonists CGP52432 and CGP54626. These findings indicate that GABA has a modulatory role in the control of salivation, acting presynaptically on serotonergic and/or dopaminergic neurotransmission. T3 - Zweitveröffentlichungen der Universität Potsdam : Mathematisch-Naturwissenschaftliche Reihe - paper 111 KW - GABA KW - salivary gland KW - innervation KW - cockroach KW - Periplaneta americana Y1 - 2009 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:517-opus-44353 ER -