Search results for "chemical signals"

showing 4 items of 4 documents

Coordination of the biliverdin D-ring in bacteriophytochromes.

2018

Phytochrome proteins translate light into biochemical signals in plants, fungi and microorganisms. Light cues are absorbed by a bilin chromophore, leading to an isomerization and a rotation of the D-ring. This relays the signal to the protein matrix. A set of amino acids, which is conserved across the phytochrome superfamily, holds the chromophore in the binding pocket. However, the functional role of many of these amino acids is not yet understood. Here, we investigate the hydrogen bonding network which surrounds the D-ring of the chromophore in the resting (Pr) state. We use UV/vis spectroscopy, infrared absorption spectroscopy and X-ray crystallography to compare the photosensory domains…

0301 basic medicineModels MolecularStereochemistryProtein ConformationProtein Data Bank (RCSB PDB)General Physics and Astronomyphytochrome proteinsbakteerit03 medical and health scienceschemistry.chemical_compoundProtein structureBacterial ProteinsProteobacteriabiochemical signalsDeinococcusPhysical and Theoretical ChemistryStigmatella aurantiacaBiliverdinBinding SitesbiologyPhytochromeBiliverdineta1182Deinococcus radioduransHydrogen BondingChromophorebiology.organism_classificationPhotochemical ProcessesD-ring030104 developmental biologychemistryproteiinitvalokemiaDeinococcusPhytochromeProtein BindingPhysical chemistry chemical physics : PCCP
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Differential efferent projections of the anterior, posteroventral, and posterodorsal subdivisions of the medial amygdala in mice

2012

The medial amygdaloid nucleus (Me) is a key structure in the control of sociosexual behaviour in mice. It receives direct projections from the main and accessory olfactory bulbs, as well as an important hormonal input. To better understand its behavioural role, in this work we investigate the structures receiving information from the Me, by analysing the efferent projections from its anterior (MeA), posterodorsal (MePD) and posteroventral (MePV) subdivisions, using anterograde neuronal tracing with biotinylated and tetrametylrhodamine-conjugated dextranamines.The Me is strongly interconnected with the rest of the chemosensory amygdala, but shows only moderate projections to the central nucl…

BiologiaEfferentNeuroscience (miscellaneous)BiologyAmygdalachemical signalslcsh:RC321-571lcsh:QM1-695ventromedial hypothalamusCellular and Molecular Neurosciencesexual behaviorPiriform cortexvomeronasal amygdalamedicinedefensive behaviourdefensive behaviorOriginal Research Articlelcsh:Neurosciences. Biological psychiatry. Neuropsychiatrysexual behaviourlcsh:Human anatomyGranule cellNeuronal tracingStria terminalismedicine.anatomical_structurenervous systemolfactory amygdalaHypothalamusAnatomyNucleusNeuroscienceNeuroscience
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Multimodal Aposematic Signals and Their Emerging Role in Mate Attraction

2018

varoitusväriwarning colourationsaaliseläimetsukupuolivalintapredator-prey interactionsparinvalintapetoeläimetmultimodal signalsta1181sexual selectionsignaalitchemical signalssignal variationFrontiers in Ecology and Evolution
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Multimodal Aposematic Signals and Their Emerging Role in Mate Attraction

2018

Chemically defended animals often display conspicuous color patterns that predators learn to associate with their unprofitability and subsequently avoid. Such animals (i.e., aposematic), deter predators by stimulating their visual and chemical sensory channels. Hence, aposematism is considered to be “multimodal.” The evolution of warning signals (and to a lesser degree their accompanying chemical defenses) is fundamentally linked to natural selection by predators. Lately, however, increasing evidence also points to a role of sexual selection shaping warning signal evolution. One of the species in which this has been shown is the wood tiger moth, Arctia plantaginis, which we here put forward…

warning colourationvaroitusvärisaaliseläimetpredator-prey interactionssukupuolivalintaparinvalintapetoeläimetmultimodal signalschemical defencessignaalitchemical signalsarcctia plantaginissignal variation
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