5-HT2A receptor-mediated G alpha(q/11) activation in psychiatric disorders: A postmortem study
WORLD JOURNAL OF BIOLOGICAL PSYCHIATRY
Authors: Odagaki, Yuji; Kinoshita, Masakazu; Meana, Jose Javier; Callado, Luis F.; Garcia-Sevilla, Jesus A.
Abstract
Objectives Serotonin-2A (5-HT2A) receptors play an important role in the regulation of many brain functions that are disturbed in patients with such psychiatric diseases as mood disorders and schizophrenia. The objective of this study was to evaluate 5-HT2A receptor-mediated signalling pathway through G alpha(q/11) activation in psychiatric patients by using post-mortem brain samples. Methods Functional activation of G alpha(q/11) proteins coupled to 5-HT2A receptors was determined by means of [S-35]GTP gamma S binding/immunoprecipitation assay in post-mortem prefrontal cortex of psychiatric patients diagnosed as bipolar disorder (BP), major depressive disorder (MDD), and schizophrenia, and individually matched controls. The effects of antipsychotic treatment as well as suicide were also analysed. Results There was no significant difference in maximum percent increase (%E-max) or slope factor among the four groups. The negative logarithm of concentration eliciting the half-maximal effect (pEC(50)) was significantly reduced in BP and schizophrenia patients as compared to controls. These alterations were attributable to antipsychotic medication. The pEC(50) values in 'non-suicide' group of schizophrenia, but not in 'suicide' group, were significantly reduced as compared with controls. Conclusions Altered 5-HT2A receptor-mediated signalling pathway through G alpha(q/11) proteins in prefrontal cortex might be apparently involved in pathophysiology and pharmacotherapy of BP and schizophrenia. In schizophrenic patients, these alterations as a result of successful treatment with antipsychotic agents may help in prevention of suicidal behaviour.
Expression and impact of Lsamp neural adhesion molecule in the serotonergic neurotransmission system
PHARMACOLOGY BIOCHEMISTRY AND BEHAVIOR
Authors: Bregin, Aleksandr; Kaare, Maria; Jagomae, Toomas; Karis, Karina; Singh, Katyayani; Laugus, Karita; Innos, Jurgen; Leidmaa, Este; Heinla, Indrek; Visnapuu, Tanel; Oja, Eva-Maria; Koiv, Kadri; Lillevali, Kersti; Harro, Jaanus; Philips, Mari-Anne; Vasar, Eero
Abstract
Limbic system associated membrane protein (Lsamp) is a neural adhesion protein which has been recently found to be differentially expressed between serotonergic neuron subtypes. We have previously shown elevated serotonin (5-HT) turnover rate in Lsamp-deficient mice. The purpose of the current study was to elucidate the role of Lsamp in serotonergic neurotransmission. Chronic (18 days) administration of serotonin reuptake inhibitor (SSRI) escitalopram (10 mg/kg) significantly increased general activity in wild-type mice in the open field and protected exploration in Lsamp(-/-) mice in the elevated-plus maze. An important psychopathology-related endophenotype, elevated 5-HT turnover in the brain of Lsamp-deficient mice, was reproduced in the saline group. Escitalopram restored the elevated 5-HT turnover of Lsamp-deficient mice to a level comparable with their wild-type littermates, suggesting that high 5-HT turnover in mutants is mediated by the increased activity of serotonin transporter (SERT protein encoded by Slc6a4 gene). The baseline level of S1c6a4 transcript was not changed in Lsamp-deficient mice, however, our immunohistochemical analysis showed partial co-expression of Lsamp with both SERT and Tph2 proteins in raphe. Overactivity of SERT in Lsamp(-/-) mice is further supported by significant elevation of Maoa transcript and increase of DOPAC, another Mao A product, specifically in the raphe. Again, elevation of DOPAC was reduced to the level of wild-type by chronic SSRI treatment. The activity of Lsamp gene promoters varied in 5-HT producing nuclei: both Lsamp la and 1b promoters were active in the dorsal raphe; most of the expression in the median raphe was from 1b promoter, whereas Lsamp la promoter was almost exclusively active in the caudal subgroup of raphe nuclei. We suggest that Lsamp may have an impact on the integrity of serotonergic synapses, which is possibly the neurochemical basis of the anxiety- and sociability-related phenotype in Lsamp-deficient mice.