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Odorant receptor coreceptor (Odorant receptor 83b)

 ORCO_DROME              Reviewed;         486 AA.
Q9VNB5; A8JQT8; Q672R0;
01-DEC-2000, integrated into UniProtKB/Swiss-Prot.
01-JUN-2001, sequence version 2.
25-OCT-2017, entry version 137.
RecName: Full=Odorant receptor coreceptor;
AltName: Full=Odorant receptor 83b;
Name=Orco; Synonyms=A45, Or83b; ORFNames=CG10609;
Drosophila melanogaster (Fruit fly).
Eukaryota; Metazoa; Ecdysozoa; Arthropoda; Hexapoda; Insecta;
Pterygota; Neoptera; Holometabola; Diptera; Brachycera; Muscomorpha;
Ephydroidea; Drosophilidae; Drosophila; Sophophora.
NCBI_TaxID=7227;
[1]
NUCLEOTIDE SEQUENCE [MRNA], FUNCTION, TISSUE SPECIFICITY,
DEVELOPMENTAL STAGE, AND VARIANT ILE-143.
STRAIN=Oregon-R; TISSUE=Antenna, and Maxillary palp;
PubMed=15339651; DOI=10.1016/j.neuron.2004.08.019;
Larsson M.C., Domingos A.I., Jones W.D., Chiappe M.E., Amrein H.,
Vosshall L.B.;
"Or83b encodes a broadly expressed odorant receptor essential for
Drosophila olfaction.";
Neuron 43:703-714(2004).
[2]
NUCLEOTIDE SEQUENCE [LARGE SCALE GENOMIC DNA].
STRAIN=Berkeley;
PubMed=10731132; DOI=10.1126/science.287.5461.2185;
Adams M.D., Celniker S.E., Holt R.A., Evans C.A., Gocayne J.D.,
Amanatides P.G., Scherer S.E., Li P.W., Hoskins R.A., Galle R.F.,
George R.A., Lewis S.E., Richards S., Ashburner M., Henderson S.N.,
Sutton G.G., Wortman J.R., Yandell M.D., Zhang Q., Chen L.X.,
Brandon R.C., Rogers Y.-H.C., Blazej R.G., Champe M., Pfeiffer B.D.,
Wan K.H., Doyle C., Baxter E.G., Helt G., Nelson C.R., Miklos G.L.G.,
Abril J.F., Agbayani A., An H.-J., Andrews-Pfannkoch C., Baldwin D.,
Ballew R.M., Basu A., Baxendale J., Bayraktaroglu L., Beasley E.M.,
Beeson K.Y., Benos P.V., Berman B.P., Bhandari D., Bolshakov S.,
Borkova D., Botchan M.R., Bouck J., Brokstein P., Brottier P.,
Burtis K.C., Busam D.A., Butler H., Cadieu E., Center A., Chandra I.,
Cherry J.M., Cawley S., Dahlke C., Davenport L.B., Davies P.,
de Pablos B., Delcher A., Deng Z., Mays A.D., Dew I., Dietz S.M.,
Dodson K., Doup L.E., Downes M., Dugan-Rocha S., Dunkov B.C., Dunn P.,
Durbin K.J., Evangelista C.C., Ferraz C., Ferriera S., Fleischmann W.,
Fosler C., Gabrielian A.E., Garg N.S., Gelbart W.M., Glasser K.,
Glodek A., Gong F., Gorrell J.H., Gu Z., Guan P., Harris M.,
Harris N.L., Harvey D.A., Heiman T.J., Hernandez J.R., Houck J.,
Hostin D., Houston K.A., Howland T.J., Wei M.-H., Ibegwam C.,
Jalali M., Kalush F., Karpen G.H., Ke Z., Kennison J.A., Ketchum K.A.,
Kimmel B.E., Kodira C.D., Kraft C.L., Kravitz S., Kulp D., Lai Z.,
Lasko P., Lei Y., Levitsky A.A., Li J.H., Li Z., Liang Y., Lin X.,
Liu X., Mattei B., McIntosh T.C., McLeod M.P., McPherson D.,
Merkulov G., Milshina N.V., Mobarry C., Morris J., Moshrefi A.,
Mount S.M., Moy M., Murphy B., Murphy L., Muzny D.M., Nelson D.L.,
Nelson D.R., Nelson K.A., Nixon K., Nusskern D.R., Pacleb J.M.,
Palazzolo M., Pittman G.S., Pan S., Pollard J., Puri V., Reese M.G.,
Reinert K., Remington K., Saunders R.D.C., Scheeler F., Shen H.,
Shue B.C., Siden-Kiamos I., Simpson M., Skupski M.P., Smith T.J.,
Spier E., Spradling A.C., Stapleton M., Strong R., Sun E.,
Svirskas R., Tector C., Turner R., Venter E., Wang A.H., Wang X.,
Wang Z.-Y., Wassarman D.A., Weinstock G.M., Weissenbach J.,
Williams S.M., Woodage T., Worley K.C., Wu D., Yang S., Yao Q.A.,
Ye J., Yeh R.-F., Zaveri J.S., Zhan M., Zhang G., Zhao Q., Zheng L.,
Zheng X.H., Zhong F.N., Zhong W., Zhou X., Zhu S.C., Zhu X.,
Smith H.O., Gibbs R.A., Myers E.W., Rubin G.M., Venter J.C.;
"The genome sequence of Drosophila melanogaster.";
Science 287:2185-2195(2000).
[3]
GENOME REANNOTATION.
STRAIN=Berkeley;
PubMed=12537572; DOI=10.1186/gb-2002-3-12-research0083;
Misra S., Crosby M.A., Mungall C.J., Matthews B.B., Campbell K.S.,
Hradecky P., Huang Y., Kaminker J.S., Millburn G.H., Prochnik S.E.,
Smith C.D., Tupy J.L., Whitfield E.J., Bayraktaroglu L., Berman B.P.,
Bettencourt B.R., Celniker S.E., de Grey A.D.N.J., Drysdale R.A.,
Harris N.L., Richter J., Russo S., Schroeder A.J., Shu S.Q.,
Stapleton M., Yamada C., Ashburner M., Gelbart W.M., Rubin G.M.,
Lewis S.E.;
"Annotation of the Drosophila melanogaster euchromatic genome: a
systematic review.";
Genome Biol. 3:RESEARCH0083.1-RESEARCH0083.22(2002).
[4]
TISSUE SPECIFICITY.
PubMed=10089887; DOI=10.1016/S0092-8674(00)80582-6;
Vosshall L.B., Amrein H., Morozov P.S., Rzhetsky A., Axel R.;
"A spatial map of olfactory receptor expression in the Drosophila
antenna.";
Cell 96:725-736(1999).
[5]
TISSUE SPECIFICITY.
PubMed=10943836; DOI=10.1016/S0092-8674(00)00021-0;
Vosshall L.B., Wong A.M., Axel R.;
"An olfactory sensory map in the fly brain.";
Cell 102:147-159(2000).
[6]
FUNCTION, AND INTERACTION WITH OR22A.
PubMed=15592462; DOI=10.1038/nn1371;
Neuhaus E.M., Gisselmann G., Zhang W., Dooley R., Stortkuhl K.,
Hatt H.;
"Odorant receptor heterodimerization in the olfactory system of
Drosophila melanogaster.";
Nat. Neurosci. 8:15-17(2005).
[7]
FUNCTION, SUBCELLULAR LOCATION, TOPOLOGY, INTERACTION WITH ORS, AND
TISSUE SPECIFICITY.
PubMed=16402857; DOI=10.1371/journal.pbio.0040020;
Benton R., Sachse S., Michnick S.W., Vosshall L.B.;
"Atypical membrane topology and heteromeric function of Drosophila
odorant receptors in vivo.";
PLoS Biol. 4:E20-E20(2006).
[8]
TOPOLOGY, GLYCOSYLATION AT ASN-169, AND MUTAGENESIS OF ASN-169.
PubMed=18005664; DOI=10.1016/j.febslet.2007.11.007;
Lundin C., Kaell L., Kreher S.A., Kapp K., Sonnhammer E.L.,
Carlson J.R., von Heijne G., Nilsson I.;
"Membrane topology of the Drosophila OR83b odorant receptor.";
FEBS Lett. 581:5601-5604(2007).
[9]
FUNCTION, AND TISSUE SPECIFICITY.
PubMed=17943085; DOI=10.1038/nature06328;
Benton R., Vannice K.S., Vosshall L.B.;
"An essential role for a CD36-related receptor in pheromone detection
in Drosophila.";
Nature 450:289-293(2007).
[10]
FUNCTION, AND INTERACTION WITH OR47A.
PubMed=18408712; DOI=10.1038/nature06850;
Sato K., Pellegrino M., Nakagawa T., Nakagawa T., Vosshall L.B.,
Touhara K.;
"Insect olfactory receptors are heteromeric ligand-gated ion
channels.";
Nature 452:1002-1006(2008).
[11]
FUNCTION, AND INTERACTION WITH OR22A AND OR47A.
PubMed=18408711; DOI=10.1038/nature06861;
Wicher D., Schaefer R., Bauernfeind R., Stensmyr M.C., Heller R.,
Heinemann S.H., Hansson B.S.;
"Drosophila odorant receptors are both ligand-gated and cyclic-
nucleotide-activated cation channels.";
Nature 452:1007-1011(2008).
[12]
INTERACTION WITH ORCO, AND FUNCTION.
PubMed=20147286; DOI=10.1074/jbc.M109.058321;
Nichols A.S., Luetje C.W.;
"Transmembrane segment 3 of Drosophila melanogaster odorant receptor
subunit 85b contributes to ligand-receptor interactions.";
J. Biol. Chem. 285:11854-11862(2010).
[13]
INTERACTION WITH OR35A AND OR67A, AND FUNCTION.
PubMed=21677030; DOI=10.1093/chemse/bjr053;
Nichols A.S., Chen S., Luetje C.W.;
"Subunit contributions to insect olfactory receptor function: channel
block and odorant recognition.";
Chem. Senses 36:781-790(2011).
[14]
INTERACTION WITH OR59B, AND FUNCTION.
PubMed=21937991; DOI=10.1038/nature10438;
Pellegrino M., Steinbach N., Stensmyr M.C., Hansson B.S.,
Vosshall L.B.;
"A natural polymorphism alters odour and DEET sensitivity in an insect
odorant receptor.";
Nature 478:511-514(2011).
-!- FUNCTION: Odorant coreceptor which complexes with conventional
odorant receptors (ORs) to form odorant-sensing units, providing
sensitive and prolonged odorant signaling and calcium
permeability. Orco is a universal and integral part of the
functional odorant receptor, involved in the dendritic
localization of other olfactory receptors. Expression of Orco
alone leads to formation of rapid and transient ion channels not
directly responding to odorants, but directly activated by
intracellular cAMP or cGMP. Snmp, Or67d and lush act in concert to
capture fatty-acid-derived male pheromone 11-cis vaccenyl acetate
(cVA) molecules on the surface of Or67d expressing olfactory
dendrites and facilitate their transfer to the odorant-receptor
Orco complex. {ECO:0000269|PubMed:15339651,
ECO:0000269|PubMed:15592462, ECO:0000269|PubMed:16402857,
ECO:0000269|PubMed:17943085, ECO:0000269|PubMed:18408711,
ECO:0000269|PubMed:18408712, ECO:0000269|PubMed:20147286,
ECO:0000269|PubMed:21677030, ECO:0000269|PubMed:21937991}.
-!- SUBUNIT: Heterodimer with conventional odorant receptors (ORs).
Complexes exist early in the endomembrane system in olfactory
sensory neurons (OSNs), coupling these complexes to the conserved
ciliary trafficking pathway.
-!- INTERACTION:
P81917:Or43a; NbExp=2; IntAct=EBI-15562228, EBI-15562282;
-!- SUBCELLULAR LOCATION: Cell membrane {ECO:0000269|PubMed:16402857};
Multi-pass membrane protein {ECO:0000269|PubMed:16402857}.
-!- TISSUE SPECIFICITY: Expression is restricted to olfactory sensory
neurons (OSNs). Coexpressed with Snmp in a lateral-distal
population of OSNs. Expressed in the embryonic antennal-maxillary
complex, in all 21 OSNs of the larval dorsal organ, in the pupal
antennal OSNs, in all 120 adult maxillary palp neurons and in
approximately 70-80% of adult antennal OSNs, where expression is
highest at the dorsal-medial edge. Localized to OSN cell bodies
and to the distal portion of ciliated OSN dendrites.
{ECO:0000269|PubMed:10089887, ECO:0000269|PubMed:10943836,
ECO:0000269|PubMed:15339651, ECO:0000269|PubMed:16402857,
ECO:0000269|PubMed:17943085}.
-!- DEVELOPMENTAL STAGE: Expressed throughout all developmental
stages. First expressed at embryonic stage 15. Pupal expression
first occurs 80 hours after puparium formation.
{ECO:0000269|PubMed:15339651}.
-!- MISCELLANEOUS: The atypical heteromeric and topological design of
the odorant receptors appears to be an insect-specific solution
for odor recognition, making the OR/Orco complex an attractive
target for the development of highly selective insect repellents
to disrupt olfactory-mediated host-seeking behaviors of insect
disease vectors. Odor-evoked OR currents are independent of known
G-protein-coupled second messenger pathways. The homomeric Orco
channel is thought to be a cyclic-nucleotide-gated ion channel
that depolarizes the olfactory receptor neuron.
-!- SIMILARITY: Belongs to the insect chemoreceptor superfamily.
Heteromeric odorant receptor channel (TC 1.A.69) family. Orco
subfamily. {ECO:0000305}.
-----------------------------------------------------------------------
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Distributed under the Creative Commons Attribution-NoDerivs License
-----------------------------------------------------------------------
EMBL; AY567998; AAT71306.1; -; mRNA.
EMBL; AE014297; AAF52031.2; -; Genomic_DNA.
EMBL; AE014297; ABW08603.1; -; Genomic_DNA.
RefSeq; NP_001097687.1; NM_001104217.2.
RefSeq; NP_524235.2; NM_079511.5.
UniGene; Dm.25037; -.
BioGrid; 65859; 5.
DIP; DIP-29174N; -.
IntAct; Q9VNB5; 2.
STRING; 7227.FBpp0112105; -.
TCDB; 1.A.69.1.1; the heteromeric odorant receptor channel (horc) family.
iPTMnet; Q9VNB5; -.
PaxDb; Q9VNB5; -.
PRIDE; Q9VNB5; -.
EnsemblMetazoa; FBtr0078794; FBpp0078438; FBgn0037324.
EnsemblMetazoa; FBtr0113193; FBpp0112105; FBgn0037324.
GeneID; 40650; -.
KEGG; dme:Dmel_CG10609; -.
UCSC; CG10609-RB; d. melanogaster.
CTD; 40650; -.
FlyBase; FBgn0037324; Orco.
eggNOG; ENOG410IK8M; Eukaryota.
eggNOG; ENOG4110PZW; LUCA.
InParanoid; Q9VNB5; -.
KO; K08471; -.
OMA; QIYYVLF; -.
OrthoDB; EOG091G07IH; -.
PhylomeDB; Q9VNB5; -.
ChiTaRS; Orco; fly.
GenomeRNAi; 40650; -.
PRO; PR:Q9VNB5; -.
Proteomes; UP000000803; Chromosome 3R.
Bgee; FBgn0037324; -.
ExpressionAtlas; Q9VNB5; differential.
Genevisible; Q9VNB5; DM.
GO; GO:0005929; C:cilium; IDA:FlyBase.
GO; GO:0030425; C:dendrite; IDA:FlyBase.
GO; GO:0032590; C:dendrite membrane; ISS:FlyBase.
GO; GO:0016021; C:integral component of membrane; IBA:GO_Central.
GO; GO:0005886; C:plasma membrane; IDA:FlyBase.
GO; GO:0015278; F:calcium-release channel activity; IDA:FlyBase.
GO; GO:0005516; F:calmodulin binding; IMP:FlyBase.
GO; GO:0005549; F:odorant binding; IPI:FlyBase.
GO; GO:0004984; F:olfactory receptor activity; IDA:FlyBase.
GO; GO:0042803; F:protein homodimerization activity; IPI:FlyBase.
GO; GO:0048149; P:behavioral response to ethanol; IMP:FlyBase.
GO; GO:0050911; P:detection of chemical stimulus involved in sensory perception of smell; IMP:FlyBase.
GO; GO:0042048; P:olfactory behavior; IMP:FlyBase.
GO; GO:0051291; P:protein heterooligomerization; IPI:FlyBase.
GO; GO:0032880; P:regulation of protein localization; IMP:FlyBase.
GO; GO:0019236; P:response to pheromone; IMP:FlyBase.
GO; GO:0007608; P:sensory perception of smell; IDA:FlyBase.
InterPro; IPR004117; 7tm6_olfct_rcpt.
PANTHER; PTHR21137; PTHR21137; 1.
Pfam; PF02949; 7tm_6; 1.
1: Evidence at protein level;
Behavior; Cell membrane; Complete proteome; Glycoprotein; Membrane;
Olfaction; Polymorphism; Receptor; Reference proteome;
Sensory transduction; Transducer; Transmembrane; Transmembrane helix.
CHAIN 1 486 Odorant receptor coreceptor.
/FTId=PRO_0000174272.
TOPO_DOM 1 47 Cytoplasmic.
{ECO:0000305|PubMed:16402857}.
TRANSMEM 48 68 Helical; Name=1. {ECO:0000255}.
TOPO_DOM 69 75 Extracellular.
{ECO:0000305|PubMed:16402857}.
TRANSMEM 76 96 Helical; Name=2. {ECO:0000255}.
TOPO_DOM 97 135 Cytoplasmic.
{ECO:0000305|PubMed:16402857}.
TRANSMEM 136 156 Helical; Name=3. {ECO:0000255}.
TOPO_DOM 157 191 Extracellular.
{ECO:0000305|PubMed:16402857}.
TRANSMEM 192 212 Helical; Name=4. {ECO:0000255}.
TOPO_DOM 213 351 Cytoplasmic.
{ECO:0000305|PubMed:16402857}.
TRANSMEM 352 372 Helical; Name=5. {ECO:0000255}.
TOPO_DOM 373 390 Extracellular.
{ECO:0000305|PubMed:16402857}.
TRANSMEM 391 411 Helical; Name=6. {ECO:0000255}.
TOPO_DOM 412 462 Cytoplasmic.
{ECO:0000305|PubMed:16402857}.
TRANSMEM 463 483 Helical; Name=7. {ECO:0000255}.
TOPO_DOM 484 486 Extracellular.
{ECO:0000305|PubMed:16402857}.
CARBOHYD 169 169 N-linked (GlcNAc...) asparagine.
{ECO:0000269|PubMed:18005664}.
CARBOHYD 188 188 N-linked (GlcNAc...) asparagine.
{ECO:0000255}.
VARIANT 143 143 T -> I (in strain: Oregon-R).
{ECO:0000269|PubMed:15339651}.
MUTAGEN 169 169 N->NQ: Destroys glycosylation site.
{ECO:0000269|PubMed:18005664}.
SEQUENCE 486 AA; 54413 MW; 8DD0ACDC3091B5D6 CRC64;
MTTSMQPSKY TGLVADLMPN IRAMKYSGLF MHNFTGGSAF MKKVYSSVHL VFLLMQFTFI
LVNMALNAEE VNELSGNTIT TLFFTHCITK FIYLAVNQKN FYRTLNIWNQ VNTHPLFAES
DARYHSIALA KMRKLFFLVM LTTVASATAW TTITFFGDSV KMVVDHETNS SIPVEIPRLP
IKSFYPWNAS HGMFYMISFA FQIYYVLFSM IHSNLCDVMF CSWLIFACEQ LQHLKGIMKP
LMELSASLDT YRPNSAALFR SLSANSKSEL IHNEEKDPGT DMDMSGIYSS KADWGAQFRA
PSTLQSFGGN GGGGNGLVNG ANPNGLTKKQ EMMVRSAIKY WVERHKHVVR LVAAIGDTYG
AALLLHMLTS TIKLTLLAYQ ATKINGVNVY AFTVVGYLGY ALAQVFHFCI FGNRLIEESS
SVMEAAYSCH WYDGSEEAKT FVQIVCQQCQ KAMSISGAKF FTVSLDLFAS VLGAVVTYFM
VLVQLK


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