TY - THES A1 - Reim, Tina T1 - Biogene Aminrezeptoren bei der Honigbiene Apis mellifera T1 - Biogenic amine receptors in the honey bee Apis mellifera BT - Charakterisierung des Tyramin 2-Rezeptors und die Beteiligung der Octopamin- und Tyraminrezeptoren an der Steuerung der altersabhängigen Arbeitsteilung N2 - Die Honigbiene Apis mellifera zeigt innerhalb einer Kolonie eine an das Alter gekoppelte Arbeitsteilung. Junge Honigbienen versorgen die Brut (Ammenbienen), während ältere Honigbienen (Sammlerinnen) außerhalb des Stocks Pollen und Nektar eintragen. Die biogenen Amine Octopamin und Tyramin sind an der Steuerung der Arbeitsteilung maßgeblich beteiligt. Sie interagieren mit Zielzellen über die Bindung an G Protein gekoppelte Rezeptoren. A. mellifera besitzt fünf charakterisierte Octopaminrezeptoren (AmOctαR1, AmOctβR1-4), einen charakterisierten Tyraminrezeptor (AmTyr1) sowie einen weiteren putativen Tyraminrezeptor. In der vorliegenden Arbeit wurde dieser putative Aminrezeptor als zweiter Tyraminrezeptor (AmTyr2) identifiziert, lokalisiert und pharmakologisch charakterisiert. Die von der cDNA abgeleitete Aminosäuresequenz weist strukturelle Eigenschaften und konservierte Motive von G Protein gekoppelten Rezeptoren auf. Phylogenetisch ordnet sich der AmTyr2 Rezeptor bei den Tyramin 2 Rezeptoren anderer Insekten ein. Die funktionelle und pharmakologische Charakterisierung des putativen Tyraminrezeptors erfolgte in modifizierten HEK293 Zellen, die mit der Rezeptor cDNA transfiziert wurden. Die Applikation von Tyramin aktiviert Adenylylcyclasen in diesen Zellen und resultiert in einem Anstieg des intrazellulären cAMP Gehalts. Der AmTyr2 Rezeptor kann durch Tyramin in nanomolaren Konzentrationen halbmaximal aktiviert werden. Während es sich bei Octopamin um einen wirkungsvollen Agonisten des Rezeptors handelt, sind Mianserin und Yohimbin effektive Antagonisten. Für die Lokalisierung des Rezeptorproteins wurde ein polyklonaler Antikörper generiert. Eine AmTyr2-ähnliche Immunreaktivität zeigt sich im Gehirn in den optischen Loben, den Antennalloben, dem Zentralkomplex und in den Kenyon Zellen der Pilzkörper. Des Weiteren wurde die Rolle der Octopamin- und Tyraminrezeptoren bei der Steuerung der altersabhängigen Arbeitsteilung analysiert. Die Genexpression des AmOctαR1 in verschiedenen Gehirnteilen korreliert unabhängig vom Alter mit der sozialen Rolle, während sich die Genexpression von AmOctβR3/4 und den Tyraminrezeptoren AmTyr1 und AmTyr2 maximal mit dem Alter aber nicht der sozialen Rolle ändert. Sammlerinnen weisen einen höheren Octopamingehalt im Gesamtgehirn auf als Ammenbienen; bei Tyramin zeigen sich keine Unterschiede. Während Tyramin offensichtlich keine direkte Rolle spielt, werden durch Octopamin gesteuerte Prozesse der altersabhängigen Arbeitsteilung bei der Honigbiene vermutlich über den AmOctαR1 vermittelt. Die Ergebnisse der vorliegenden Arbeit zeigen die wichtige Rolle von biogenen Aminen, insbesondere Octopamin bei der sozialen Organisation von Insektenstaaten. N2 - The honey bee Apis mellifera exhibits an age-dependent division of labour. Young bees take care of the brood (nurse bees), while older honey bees (foragers) leave the hive to provide the colony with pollen and nectar. The biogenic amines octopamine and tyramine are significantly involved in regulating the division of labour. They interact with target cells via binding to G protein-coupled receptors. A. mellifera has five characterised octopamine receptors (AmOctαR1, AmOctβR1-4), one characterised tyramine receptor (AmTyr1) and an additional putative tyramine receptor. In the present study, the putative amine receptor was identified as a second tyramine receptor (AmTyr2), was localized and characterised pharmacologically. The deduced amino acid sequence shows structural properties and conserved motifs of G protein-coupled receptors. Phylogenetically the AmTyr2 receptor clusters with tyramine 2 receptors from other insect species. Functional and pharmacological characterisation of the putative tyramine receptor was carried out using modified HEK293 cells trans¬fected with the receptor cDNA. Application of tyramine activates adenylyl cyclases in these cells, which leads to an elevated intracellular cAMP level. Half maximal activation can be achieved by applying tyramine with concentrations in the nanomolar range. While octopa¬mine is an effective agonist of the receptor, mianserin and yohimbine are the most effective antagonists. A polyclonal antibody was generated for the localisation of the receptor protein. AmTyr2 like immunoreactivity can be observed in the optic lobes, the Kenyon cells of the mushroom bodies, the antennal lobes and the central complex of the brain. Furthermore, the role of the octopamine and tyramine receptors in regulating the age-dependent division of labour was analysed. The gene expression of the AmOctαR1 in different brain neuropiles correlates with the social role of the honey bee, while the gene expression of AmOctβR3/4, AmTyr1 and AmTyr2 mostly changes with age but not social role. Additionally, foragers have higher octopamine brain titres than nurse bees. No differences can be observed for the titre of tyramine. Octopamine-regulated processes in age-dependent division of labour are probably mediated via the AmOctαR1. Tyramine has obviously no direct impact on the age-dependent division of labour. The present study shows the important role of biogenic amines, particularly octopamine in the social organisation of insect societies. KW - Apis mellifera KW - honey bee KW - Honigbiene KW - biogene Amine KW - biogenic amines KW - Octopamin KW - octopamine KW - Tyramin KW - tyramine KW - Arbeitsteilung KW - division of labor Y1 - 2015 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:517-opus4-80982 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 - Scheiner, Ricarda A1 - Baumann, Arnd A1 - Blenau, Wolfgang T1 - Aminergic control and modulation of honeybee behaviour N2 - Biogenic amines are important messenger substances in the central nervous system and in peripheral organs of vertebrates and of invertebrates. The honeybee, Apis mellifera, is excellently suited to uncover the functions of biogenic amines in behaviour, because it has an extensive behavioural repertoire, with a number of biogenic amine receptors characterised in this insect. In the honeybee, the biogenic amines dopamine, octopamine, serotonin and tyramine modulate neuronal functions in various ways. Dopamine and serotonin are present in high concentrations in the bee brain, whereas octopamine and tyramine are less abundant. Octopamine is a key molecule for the control of honeybee behaviour. It generally has an arousing effect and leads to higher sensitivity for sensory inputs, better learning performance and increased foraging behaviour. Tyramine has been suggested to act antagonistically to octopamine, but only few experimental data are available for this amine. Dopamine and serotonin often have antagonistic or inhibitory effects as compared to octopamine. Biogenic amines bind to membrane receptors that primarily belong to the large gene-family of GTP-binding (G) protein coupled receptors. Receptor activation leads to transient changes in concentrations of intracellular second messengers such as cAMP, IP3 and/or Ca2+. Although several biogenic amine receptors from the honeybee have been cloned and characterised more recently, many genes still remain to be identified. The availability of the completely sequenced genome of Apis mellifera will contribute substantially to closing this gap. In this review, we will discuss the present knowledge on how biogenic amines and their receptor-mediated cellular responses modulate different behaviours of honeybees including learning processes and division of labour. KW - Serotonin KW - dopamine KW - octopamine KW - tyramine KW - honeybee Y1 - 2006 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:517-opus-46106 ER -