When is a Butterfly like an Elephant ?

References 2

Glover, T., Campbell, M., Robbins P., & Roelofs, W. (1990). Sex-linked control of sex pheromone behavioral responses in European corn borer moths (Ostrinia nubilalis) confirmed with TPI marker gene, Arch. Insect. Biochem. Physiol. 15, 67-77.
Breer, H., Wanner, I., & Stritmann, J. (1996). Molecular genetics of mammalian olfaction, Behav. Genetics. 26, 209-219.
Boekhoff, I., & Breer, H. (1992). Termination of 2nd-messenger signalling in olfaction, Proc. Nat. Acad. Sci. USA. 89, 471-474.
Boekhoff, I., Kroner, C., & Breer, H. (1996). Calcium controls 2nd-messenger signalling in olfactory cilia, Cellular signalling 8, 167-171.
Breer, H. and Shepherd, G.M. (1993). Implications of the NO/cGMP system for olfaction. Trends Neurosci 16, 5-9.
Breer, H. (1994). Signal recognition and chem-electrical transduction in olfaction. Biosensors & Bioelectronics 9, 625-632.
Breer, H., Raming, K. & Krieger, J. (1994). Signal recognition and transduction in olfactory neurons. Biochim. Biophys. Acta. 1224, 277-287.
Breer, H. & Boekhoeff, I. (1991). Odorants of the same odor class activate different 2nd messenger systems. Chemical Senses 16, 19-29.
Spielman, A.I., Nagai, H., Sunvala, G., Dasso, M., Breer, H., Boekhoff, I., Huque, T., Whitney, G., and Brand, J.G. (1996). Rapid kinetics of 2nd messenger production in bitter taste. Amer. J. Physiol. Cell Physiol. 39, C926-C931.
Vogt, R.G., Rybczynski, R. and Lerner, M.R. (1991). Molecular cloning and sequencing of general odorant binding proteins GOBP1 and GOBP2 from the Tobacco hawk moth Manduca sexta - comparisons with other insect OBPS and their signal peptides. J. Neurosci. 11, 2972-2984
Pelosi , P., & Maida, R. (1995). Odorant binding proteins in insects. Comp. Biochem & Physiol. 111, 503-514.
Du, G. & Prestwich, G.D. (1995). Protein structure encodes the ligand binding specificity in pheromone binding proteins. Biochemistry 34, 8726-8732.
Boekhoff, I., Raming, K., & Breer, H. (1990). Pheromone induced stimulation of inositol triphosphate formation in insect antennae is mediated by G-proteins. J. Comp. Physiol. B 160, 99-103.
Boekhoff, I. Strotmann, J., Raming, K., Tareilus, E., & Breer, H. (1990) Odorant sensitive phospholipase C in insect antennae. Cellular Signalling 2, 49-56.
Prestwich, G.D. (1996). Proteins that smell - pheromone recognition and signal transduction. Biorg. & Med. Chem. 4, 505-513.
Schleicher, S., Boekhoff, I., Konietzko, U. and Breer, H. (1994). Pheromone induced phosphorylation of antennal proteins from insects. J. Comp. Physiol. B 164, 76-80.
Boekhoff, I., Seifert, E., Goggerles, S., Lindemann, M., Kriger, B.W., & Breer, H. (1993). Pheromone induced 2nd messenger signalling in insect antennae. Insect Biochem. & Mol. Biol. 23, 757-762.
Eisthen, H.L. (1992). Phylogeny of the vomeronasal gland and of receptor cell types on the olfactory and vomeronasal epithelia of vertebrates. Microscopy Res. & Technique. 23, 1-21.
Meredith, M. & Howard, G. (1992). Intracerebroventricular LHRH relieves behavioural deficits due to vomeronasal organ removal. Brain Research Bulletin 29, 75-79
Ohno, K., Kawasaki, Y., Kubo, T., & Tohyama, M. (1996). Differential expression of odorant binding protein genes in rat nasal glands- implications for odorant binding protein (II) as a possible pheromone transporter. Neuroscience 71, 355-366.
Dulac, C. & Axel, R. (1995). A novel family of genes encoding putative pheromone receptors in mammals. Cell 83, 195-206.
Berghard, A., Buck, L.B., & Liman, E.R. (1996). Evidence for distinct signalling mechanisms in two mammalian olfactory sense organs. Proc. Natl. Acad. Sci. USA. 93, 2365-2369.
Wu, Y.M., Tirindelli, R. and Ryba, N.J.P. (1996). Evidence for different chemosensory signal transduction pathways in olfactory and vomeronasal neurons, Biochim. Biophys. Res. Comms. 220, 900-904.
Okamoto, K., Tokumitsu, Y. & Kashiwayanagi, M. (1996). Adenylyl cyclase activity in turtle vomeronasal and olfactory epithelium. Biochim. Biophys. Res. Commun. 220, 98-101.
Tanguichi, HM., Kashiwayanagi, M., & Kurihara, K. (1995). Intracellular injection of inositol 1,4,5-triphosphate increases conductance in membranes of turtle vomeronasal receptor neurones in the slice preparation. Neurosci. Letts. 188, 5-8.
Krishna, N.S.R., Getchell, M.L., Margolis, F.L. & Getchell, T.V. (1995). Differential expression of vomeromodulin and odorant-binding protein, putative pheromone and odorant transporters, in the developing rat nasal chemosensory mucosae. J. Neurosci. Res. 40, 54-71
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