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Mu Opioid Receptor-like Sequences Are Present Throughout Vertebrate Evolution

Overview
Journal J Mol Evol
Specialty Biochemistry
Date 1996 Sep 1
PMID 8703083
Citations 7
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Abstract

The sequence of the mu opioid receptor is highly conserved among human, rat, and mouse. In order to gain insights into the evolution of the mu opioid receptor, polymerase chain reaction (PCR) was used to screen genomic DNA from a number of different species using degenerate oligonucleotides which recognize a highly conserved region. DNA was assayed from representative species of both the protostome and deuterostome branches of the metazoan phylogenetic tree. Mu opioid receptor-like sequences were found in all vertebrate species that were analyzed. These species included bovine, chicken, bullfrog, striped bass, thresher shark, and Pacific hagfish. However, no mu opioid receptor-like sequences were detected from protostomes or from any invertebrates. The PCR results demonstrate that the region of the mu opioid receptor gene between the first intracellular loop and the third transmembrane domain (TM3) has been highly conserved during evolution and that mu opioid receptor-like sequences are present in the earliest stages of vertebrate evolution. Additional opioid receptor-like sequence was obtained from mRNA isolated from Pacific hagfish brain using rapid amplification of cDNA ends (RACE). The sequence of the Pacific hagfish was most homologous with the human mu opioid receptor (72% at the amino acid level between intracellular loop 1 and transmembrane domain 6) although over the same region high homology was also observed with the delta opioid receptor (69%), the kappa receptor (63%), and opioid receptor-like (ORL1) (59%). The hagfish sequence showed low conservation with the mammalian opioid receptors in the first and second extracellular loops but high conservation in the transmembrane and intracellular domains.

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References
1.
Mollereau C, Parmentier M, Mailleux P, Butour J, Moisand C, Chalon P . ORL1, a novel member of the opioid receptor family. Cloning, functional expression and localization. FEBS Lett. 1994; 341(1):33-8. DOI: 10.1016/0014-5793(94)80235-1. View

2.
Klein P, Sun T, Saxe 3rd C, Kimmel A, Johnson R, Devreotes P . A chemoattractant receptor controls development in Dictyostelium discoideum. Science. 1988; 241(4872):1467-72. DOI: 10.1126/science.3047871. View

3.
Martin R, Frosch D, Weber E, Voigt K . Met-enkephaline-like immunoreactivity in a cephalopod neurohemal organ. Neurosci Lett. 1979; 15(2-3):253-7. DOI: 10.1016/0304-3940(79)96122-6. View

4.
Gubler U, HOFFMAN B . A simple and very efficient method for generating cDNA libraries. Gene. 1983; 25(2-3):263-9. DOI: 10.1016/0378-1119(83)90230-5. View

5.
Evans C, Keith Jr D, Morrison H, Magendzo K, EDWARDS R . Cloning of a delta opioid receptor by functional expression. Science. 1992; 258(5090):1952-5. DOI: 10.1126/science.1335167. View