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L A Helton

Publications and source records attributed to L A Helton.

2 recordsLinked to original sources

Molecular biology of serotonin receptors.

Over the last several years the use of molecular cloning technology has revealed a vast diversity among serotonin (5-HT) receptors, whereby what was previously thought to be a family of three pharmacologically defined classes of 5-HT receptors is actually composed of seven distinct subfamilies designated 5-HT1-7. The 5-HT1, 5-HT2, and 5-HT5 subfamilies currently consist of five, three and two subtypes respectively while the 5-HT3, 5-HT4, 5-HT6, and 5-HT7 "subfamilies" have at present one subtype each. Fourteen separate genes encode 13 receptors which fall in the superfamily of G protein-coupled receptors and one ligand-gated ion channel receptor. Our lab has contributed to the elucidation of this subtype diversity by cloning the cDNAs from both rat and human encoding the 5-HT2B receptor. This receptor subtype is equally homologous (approximately 70%) to the 5-HT2A and 5-HT2C receptors when amino acids comprising the transmembrane domains are compared and is clearly the third member of the 5-HT2 subfamily. The 5-HT2B receptor has been shown to couple to phosphoinositide hydrolysis as do the other two members of this subfamily when expressed in AV12-664 cells. Limited pharmacological analyses indicated that both rat and human 5-HT2B receptors are similar but distinguishable. With one tantalizing exception, the mRNAs for these receptors appear to be similarly distributed within rat and human. The 5-HT2B receptor mRNA is not found in rat brain, whereas in human brain it has been identified in multiple regions. This later finding suggests that the 5-HT2B receptor may be serving a unique CNS function in man that is absent in rat.

Amino Acid Sequence↗

5-hydroxytryptamine2A, 5-hydroxytryptamine2B, and 5-hydroxytryptamine2C receptor mRNA expression in the spinal cord of rat, cat, monkey and human.

Currently three subtypes of the 5-HT2 receptor have been identified through binding studies and/or molecular biology studies, 5-HT2A, 5-HT2B, and 5-HT2C. The identification of these receptor subtypes in the spinal cord of humans and experimental animal species is incomplete. In the present study, polymerase chain reaction with Southern hybridization analysis was used to determine whether the mRNA for the 5-HT2A, 5-HT2B and 5-HT2C receptors could be detected in spinal cord tissue from rats, cats, monkeys and humans. Brain tissue from rat, cat and monkey were also examined for comparison. 5-HT2A and 5-HT2B receptor mRNAs were amplified and localized with rat 5-HT2A and 5-HT2B primers and probes, respectively, in tissue from all species. In rats, 5-HT2C receptor mRNA was amplified and localized with rat 5-HT2C primer and mouse 5-HT2C probe, respectively, while in cat, monkey, and human tissue, human 5-HT2C primers and probes were used. Spinal cord from all four species contained mRNA for the 5-HT2A receptor. Brain tissue from rat, cat and monkey also contained 5-HT2A mRNA. Spinal cord tissue from all four species contained 5-HT2B message. Brain tissue from cat and monkey contained 5-HT2B mRNA, but this was not detected in rat brain. 5-HT2C mRNA was detected in spinal cord and brain tissue from rat, monkey and human, but was only detected in brain tissue of the cat (i.e. no 5-HT2C mRNA was detected in cat spinal cord).(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗