FMRFamide


REFERENCES

Allan, D., St. Pierre, S. E., Miguel-Aliaga, I. and Thor, S. (2003). Specification of neuropeptide cell identity by the integration of retrograde BMP signaling and a combinatorial transcription factor code. Cell 113: 73-86. 12679036

Allan, D. W., Park, D., St. Pierre, S. E., Taghert, P. H. and Thor, S. (2005). Regulators acting in combinatorial codes also act independently in single differentiating neurons. Neuron 45: 689-700. 15748845

Askwith, C. C., et al. (2000). Neuropeptide FF and FMRFamide potentiate acid-evoked currents from sensory neurons and proton-gated DEG/ENaC channels. Neuron 26: 133-141. >

Belkin, K. J. and Abrams, T. W. (1998). The effect of the neuropeptide FMRFamide on Aplysia californica siphon motoneurons involves multiple ionic currents that vary seasonally. J. Exp. Biol. 201: 2225-34.

Benveniste, R. J., et al. (1998). Cell type-specific regulation of the Drosophila FMRF-NH2 neuropeptide gene by Apterous, a LIM homeodomain transcription factor. Development 125: 4757-4765

Bowman, J. W. (1995). Nitric oxide mediates the inhibitory effects of SDPNFLRFamide, a nematode FMRFamide-related neuropeptide, in Ascaris suum. J. Neurophysiol. 74: 1880-1888.

Brezden, B. L., Benjamin, R. P. and Gardner, D. R. (1992). Activation of a divalent cation-conducting channel in heart ventricle muscle cells of the snail Lymnaea stagnalis by the molluscan cardioactive peptide FMRFamide. Acta Biol. Hung. 43: 25-38.

Brownlee, D. J., et al. (1995). The action of serotonin and the nematode neuropeptide KSAYMRFamide on the pharyngeal muscle of the parasitic nematode, Ascaris suum. Parasitology 111: 379-384.

Cazzamali, G. and Grimmelikhuijzen, C. J. P. (2002). Molecular cloning and functional expression of the first insect FMRFamide receptor. Proc. Natl. Acad. Sci. 99: 12073-12078. 12218185

Chin, A. C., Reynolds, E. R. and Scheller, R. H. (1990). Organization and expression of the Drosophila FMRFamide-related prohormone gene. DNA Cell Biol. 9: 263-71.

Chin, G. J., et al. (1994). Characterization and solubilization of the FMRFamide receptor of squid. Biol. Bull. 187: 185-199.

Coscoy S., et al. (1998). The Phe-Met-Arg-Phe-amide-activated sodium channel is a tetramer. J. Biol. Chem. 273(14): 8317-22.

Devillers, J. P., et al. (1994). Characterization of a potent agonist for NPFF receptors: binding study on rat spinal cord membranes. Neuropharmacology 33: 661-669.

Devillers, J. P., et al. (1995). Release of neuropeptide FF, an anti-opioid peptide, in rat spinal cord slices is voltage- and Ca(2+)-sensitive: possible involvement of P-type Ca2+ channels. J. Neurochem. 64: 1567-75.

Duttlinger, A., Mispelon, M. and Nichols, R. (2003). The structure of the FMRFamide receptor and activity of the cardioexcitatory neuropeptide are conserved in mosquito. Neuropeptides 37: 120-126. 12747944

Edison, A. S., Messinger, L. A. snf Stretton, A. O. (1997). afp-1: a gene encoding multiple transcripts of a new class of FMRFamide-like neuropeptides in the nematode Ascaris suum. Peptides 18(7): 929-35.

Endo, S., et al. (1995). Protein phosphatase-1 regulates outward K+ currents in sensory neurons of Aplysia californica. J. Neurochem. 64: 1833-40.

Evans, C. G., et al. (1999). Modulation of radula opener muscles in Aplysia. J. Neurophysiol. 82(3): 1339-51.

Favrel, P., et al. (1994). A new biological activity for the neuropeptide FMRFamide: experimental evidence for a secretagogue effect on amylase secretion in the scallop Pecten maximus. Experientia 50: 1106-1110.

Gauthier, S. A. and Hewes, R. S. (2006). Transcriptional regulation of neuropeptide and peptide hormone expression by the Drosophila dimmed and cryptocephal genes. J. Exp. Biol. 209: 1803-1815. 16651547

Gouarderes, C., et al. (1993). Antinociceptive effects of intrathecally administered F8Famide and FMRFamide in the rat. Eur. J. Pharmacol. 237: 73-81.

Hewes, R. S., et al. (1998). Functional redundancy of FMRFamide-related peptides at the Drosophila larval neuromuscular junction. J. Neurosci. 18(18): 7138-51.

Hewes, R. S., Gu, T., Brewster, J. A., Qu, C. and Zhao, T. (2006). Regulation of secretory protein expression in mature cells by DIMM, a basic helix-loop-helix neuroendocrine differentiation factor. J. Neurosci. 26(30): 7860-9. 16870731

Jiang, N., et al. (2000). Phm is required for normal developmental transitions and for biosynthesis of secretory peptides in Drosophila. Dev. Biol. 226: 118-136. 10993678

Keating, C. and Lloyd. P. E.(1999). Differential modulation of motor neurons that innervate the same muscle but use different excitatory transmitters in aplysia. J. Neurophysiol. 82(4): 1759-67.

Kemenes, G., et al. (1992). Distinct receptors for Leu- and Met-enkephalin on the metacerebral giant cell of Aplysia. Cell Mol. Neurobiol. 12: 107-19.

Kontinen, V. K., et al. (1997). Neuropeptide FF in the rat spinal cord during carrageenan inflammation. Peptides 18(2): 287-92.

Kim, Y. J., Zitnan, D., Galizia, C. G., Cho, K. H. and Adams, M. E. (2006). A command chemical triggers an innate behavior by sequential activation of multiple peptidergic ensembles. Curr. Biol. 16: 1395-1407. 16860738

Lange, A. B., Peeff, N. M. and Orchard, I. (1994). Isolation, sequence, and bioactivity of FMRFamide-related peptides from the locust ventral nerve cord. Peptides 15: 1089-1094.

Lange, A. B., et al. (1995). A nonpeptide agonist of the invertebrate receptor for SchistoFLRFamide (PDVDHVFLRFamide), a member of a subfamily of insect FMRFamide-related peptides. Proc. Natl. Acad. Sci. 92: 9250-9253.

Lingueglia, E., et al. (1995). Cloning of the amiloride-sensitive FMRFamide peptide-gated sodium channel. Nature 378: 730-733.

Liu, G. J. and Takeuchi, H. (1995). Suppressing effects of neuroactive peptides on the inward current caused by achatin-I, an Achatina endogenous peptide. Gen. Pharmacol. 26: 765-772.

Miguel-Aliaga, I., Allan, D. W. and Thor, S. (2004). Independent roles of the dachshund and eyes absent genes in BMP signaling, axon pathfinding and neuronal specification. Development 131: 5837-5848. 15525669

Marks, N. J., et al. (1995). Isolation of AF2 (KHEYLRFamide) from Caenorhabditis elegans: evidence for the presence of more than one FMRFamide-related peptide-encoding gene. Biochem. Biophys. Res. Commun. 217: 845-851.

Marks, N. J., et al. (1997). APEASPFIRFamide, a novel FMRFamide-related decapeptide from Caenorhabditis elegans: structure and myoactivity. Biochem. Biophys. Res. Commun. 231(3): 591-5.

Marks, N. J., et al. (1998). KSAYMRFamide (PF3/AF8) is present in the free-living nematode, Caenorhabditis elegans. Biochem. Biophys. Res. Commun. 248(2): 422-5.

Marqués, G., et al. (2003). Retrograde Gbb signaling through the Bmp type 2 receptor Wishful Thinking regulates systemic FMRFa expression in Drosophila. Development 130: 5457-5470. 14507784

McGaw, I. J. and McMahon, B. R. (1995). The FMRFamide-related peptides F1 and F2 alter hemolymph distribution and cardiac output in the crab Cancer magister. Biol. Bull. 188: 186-196.

Mitgutsch, C., Hauser, F., Grimmelikhuijzen, C. J. (1999). Expression and developmental regulation of the Hydra-RFamide and Hydra-LWamide Preprohormone genes in Hydra: Evidence for transient phases of head formation. Dev. Biol. 207(1): 189-203

Muthal, A. V. and Chopde, C. T. (1994). Anxiolytic effect of neuropeptide FMRFamide in rats. Neuropeptides 27: 105-108.

Muthal, A. V. and Chopde, C. T. (1995). Effect of neuropeptide FMRFamide on immobile behavior in rats. Indian J. Exp. Biol. 33: 182-185.

Muthal, A. V., Mandhane, S. N. and Chopde, C. T. (1997). Central administration of FMRFamide produces antipsychotic-like effects in rodents. Neuropeptides 31(4): 319-22.

Nadim, F. and Calabrese, R. L. (1997). A slow outward current activated by FMRFamide in heart interneurons of the medicinal leech. J. Neurosci. 17: 4461-4472.

Nambu, J. R., et al. (1988). Isolation and characterization of a Drosophila neuropeptide gene. Neuron 1: 55-61.

Nelson, L. S., Rosoff, M. L. and Li, C. (1998). Disruption of a neuropeptide gene, flp-1, causes multiple behavioral defects in Caenorhabditis elegans. Science 281(5383): 1686-1690.

Nichols, R., Schneuwly, S. A. and Dixon, J. E. (1988). Identification and characterization of a Drosophila homolog to the vertebrate neuropeptide cholecystokinin. J. Biol. Chem. 263: 12167-70

Nichols, R. (1992a). Isolation and structural characterization of Drosophila TDVDHVFLRFamide and FMRFamide-containing neural peptides. J. Mol. Neurosci. 3: 213-8.

Nichols, R. (1992b). Isolation and expression of the Drosophila drosulfakinin neural peptide gene product, DSK-I. Mol. Cell. Neurosci. 3: 342-347

Nichols, R., et al. (1995a). Cellular expression of the Drosophila melanogaster FMRFamide neuropeptide gene product DPKQDFMRFamide. Evidence for differential processing of the FMRFamide polypeptide precursor. J. Mol. Neurosci. 6: 1-10.

Nichols, R., et al. (1995b). Spatial and temporal analysis of the Drosophila FMRFamide neuropeptide gene product SDNFMRFamide: evidence for a restricted expression pattern. Neuropeptides 29: 205-213.

Nichols, R. (2006). FMRFamide-related peptides and serotonin regulate Drosophila melanogaster heart rate: mechanisms and structure requirements. Peptides 27(5): 1130-7. 16516344

Nishimura, M., et al. (2000). Role of FMRFamide-activated brain sodium channel in salt-sensitive hypertension. Hypertension 35: 443-50.

O'Brien, M. A., Schneider, L. E. and Taghert, P. H. (1991). In situ hybridization analysis of the FMRFamide neuropeptide gene in Drosophila. II. Constancy in the cellular pattern of expression during metamorphosis. J. Comp. Neurol. 304: 623-38.

Peter, N., et al. (1994). Decrease in growth cone-neurite fasciculation by sensory or motor cells in vitro accompanies downregulation of Aplysia cell adhesion molecules by neurotransmitters. J. Neurosci. 14: 1413-21.

Pieroni, J. P. and Byrne, J. H. (1992). Differential effects of serotonin, FMRFamide, and small cardioactive peptide on multiple, distributed processes modulating sensorimotor synaptic transmission in Aplysia. J Neurosci 12: 2633-47.

Pivovarov, A. S., Sharma, R. and Walker, R. J. (1995). Inhibitory action of SKPYMRFamide on acetylcholine receptors of Helix aspersa neurons: role of second messengers. Gen. Pharmacol. 26: 495-505.

Santama, N., Benjamin, P. R. and Burke, J. F. (1995). Alternative RNA splicing generates diversity of neuropeptide expression in the brain of the snail lymnaea: in situ analysis of mutually exclusive transcripts of the FMRFamide gene. Eur. J. Neurosci. 7: 65-76.

Santarelli, L., Montarolo, P. and Schacher, S. (1996). Neuropeptide localization in varicosities of Aplysia sensory neurons is regulated by target and neuromodulators evoking long-term synaptic plasticity. J. Neurobiol. 31: 297-308.

Schinkmann, K. and Li, C. (1994). Comparison of two Caenorhabditis genes encoding FMRFamide(Phe-Met-Arg-Phe-NH2)-like peptides. Brain Res. Mol. Brain Res. 24: 238-246.

Schneider, L. E. and Taghert, P. H. (1988). Isolation and characterization of a Drosophila gene that encodes multiple neuropeptides related to Phe-Met-Arg-Phe-NH2 (FMRFamide). Proc. Natl. Acad. Sci. 85: 1993-7. 88158119

Schneider, L. E. and Taghert, P. H. (1990). Organization and expression of the Drosophila Phe-Met-Arg-Phe-NH2 neuropeptide gene. J. Biol. Chem. 265: 6890-5.

Schneider, L. E., O'Brien, M. A. and Taghert, P. H. (1991). In situ hybridization analysis of the FMRFamide neuropeptide gene in Drosophila. I. Restricted expression in embryonic and larval stages. J. Comp. Neurol. 304: 608-22.

Schneider, L. E., et al. (1993a). An immunocytochemical study of the FMRFamide neuropeptide gene products in Drosophila. J. Comp. Neurol. 337: 446-60.

Schneider, L. E., Roberts, M. S. and Taghert, P. H. (1993b). Cell type-specific transcriptional regulation of the Drosophila FMRFamide neuropeptide gene. Neuron 10: 279-91.

Scott, M. L., Brezina, V. and Weiss, K. R. (1997). Ion currents and mechanisms of modulation in the radula opener muscles of Aplysia. J. Neurophysiol. 78(5): 2372-87.

Skerrett, M., et al. (1995). Physiological effects of two FMRFamide-related peptides from the crayfish Procambarus clarkii. J. Exp. Biol. 198: 109-116.

Small, S. A., et al. (1992). Identified FMRFamide-immunoreactive neuron LPL16 in the left pleural ganglion of Aplysia produces presynaptic inhibition of siphon sensory neurons. J Neurosci 12: 1616-27.

Sun, Z. Y., Kauderer, B. and Schacher, S. (1996). Differential distribution of functional receptors for neuromodulators evoking short-term heterosynaptic plasticity in Aplysia sensory neurons. J. Neurosci. 16: 7540-9.

Sweatt, J. D., et al. (1989). FMRFamide reverses protein phosphorylation produced by 5-HT and cAMP in Aplysia sensory neurons. Nature 342: 275-8.

Taghert, P. H. and Schneider, L. E. (1990). Interspecific comparison of a Drosophila gene encoding FMRFamide-related neuropeptides. J. Neurosci. 10: 1929-42.

Taghert, P. H., et al. (2000). Metamorphosis of tangential visual system neurons in Drosophila. Dev. Biol. 222: 471-485

Taghert, P. H., et al. (1992). Molecular genetic analysis of the FMRFamide-related neuropeptides in Drosophila. Prog. Brain Res. 92: 163-74.

Ude, J. and Agricola, H. (1995). FMRFamide-like and allatostatin-like immunoreactivity in the lateral heart nerve of Periplaneta americana: colocalization at the electron-microscopic level. Cell Tissue Res. 282: 69-80.

van Meyel, D. J., et al. (2000). Chip is an essential cofactor for Apterous in the regulation of axon guidance in Drosophila. Development 127: 1823-1831

Vilim, F. S., et al. (1999). Gene for pain modulatory neuropeptide NPFF: induction in spinal cord by noxious stimuli. Mol. Pharmacol. 55(5): 804-11.

Wang, Z., et al. (1995a). Binding and activation regions of the decapeptide PDVDHVFLRFamide (SchistoFLRFamide). Neuropeptides 28: 261-266.

Wang, Z., Lange, A. B. and Orchard, I. (1995b). Coupling of a single receptor to two different G proteins in the signal transduction of FMRFamide-related peptides. Biochem. Biophys. Res. Commun. 212: 531-538.

Wenning, A., et al. (1993). Sensory and neurosecretory innervation of leech nephridia is accomplished by a single neurone containing FMRFamide. J. Exp. Biol. 182: 81-96.

Witten, J. L. and Truman, J. W. (1996). Developmental plasticity of neuropeptide expression in motoneurons of the moth, Manduca sexta: steroid hormone regulation. J. Neurobiol. 29 (1): 99-114.

Worden, M. K., Kravitz, E. A. and Goy, M. F. (1995). Peptide F1, an N-terminally extended analog of FMRFamide, enhances contractile activity in multiple target tissues in lobster. J. Exp. Biol. 198: 97-108.

Wu, F. and Schacher, S. (1994). Pre- and postsynaptic changes mediated by two second messengers contribute to expression of Aplysia long-term heterosynaptic inhibition. Neuron 12: 407-21.

Zhu, H., Wu, F. and Schacher, S. (1995). Changes in expression and distribution of Aplysia cell adhesion molecules can influence synapse formation and elimination in vitro. J Neurosci 15: 4173-4183.

Zitnan, D., Sehnal, F. and Bryant, P. J. (1993). Neurons producing specific neuropeptides in the central nervous system of normal and pupariation delayed Drosophila. Dev. Biol. 156: 117-135.


FMRFamide: Biological Overview | Evolutionary Homologs | Regulation | Developmental Biology

date revised: 20 December 2006


 

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