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RESEARCH PRODUCT
Cryptochrome in Sponges: A Key Molecule Linking Photoreception with Phototransduction
Renate SteffenMichael KorzhevHeinz C. SchröderVlad A. GrebenjukWerner E. G. M�llerJulia S. MarklXiaohong Wangsubject
Nervous systemHistologyLight Signal TransductionMolecular Sequence DataNitric Oxide03 medical and health sciences0302 clinical medicineDemospongeCryptochromeCell MovementmedicineAnimalsAmino Acid SequenceTransducinCloning Molecular030304 developmental biology0303 health sciencesbiologyArticlesbiology.organism_classificationHeterotrimeric GTP-Binding ProteinsCell biologySuberites domunculaCryptochromesSpongemedicine.anatomical_structureBiochemistryTransducinAnatomyNitric Oxide SynthaseCarrier ProteinsSuberitesSequence Alignment030217 neurology & neurosurgerySuberitesVisual phototransductiondescription
Sponges (phylum: Porifera) react to external light or mechanical signals with contractile or metabolic reactions and are devoid of any nervous or muscular system. Furthermore, elements of a photoreception/phototransduction system exist in those animals. Recently, a cryptochrome-based photoreceptor system has been discovered in the demosponge. The assumption that in sponges the siliceous skeleton acts as a substitution for the lack of a nervous system and allows light signals to be transmitted through its glass fiber network is supported by the findings that the first spicules are efficient light waveguides and the second sponges have the enzymatic machinery for the generation of light. Now, we have identified/cloned in Suberites domuncula two additional potential molecules of the sponge cryptochrome photoreception system, the guanine nucleotide-binding protein β subunit, related to β-transducin, and the nitric oxide synthase (NOS)–interacting protein. Cryptochrome and NOSIP are light-inducible genes. The studies show that the NOS inhibitor L-NMMA impairs both morphogenesis and motility of the cells. Finally, we report that the function of primmorphs to produce reactive nitrogen species can be abolished by a NOS inhibitor. We propose that the sponge cryptochrome-based photoreception system, through which photon signals are converted into radicals, is coupled to the NOS apparatus.
year | journal | country | edition | language |
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2013-08-06 |