Altered gene expression in early postnatal monoamine oxidase A knockout mice
BRAIN RESEARCH
Authors: Chen, Kevin; Kardys, Abbey; Chen, Yibu; Flink, Stephen; Tabakoff, Boris; Shih, Jean C.
Abstract
We reported previously that monoamine oxidase (MAO) A knockout (KO) mice show increased serotonin (5-hydroxytryptamine, 5-HT) levels and autistic-like behaviors characterized by repetitive behaviors, and anti-social behaviors. We showed that administration of the serotonin synthesis inhibitor parachlorophenylalanine (pCPA) from post-natal day 1 (P1) through 7 (P7) in MAO A KO mice reduced the serotonin level to normal and reverses the repetitive behavior. These results suggested that the altered gene expression at P1 and P7 may be important for the autistic-like behaviors seen in MAO A KO mice and was studied here. In this study, Affymetrix mRNA array data for P1 and P7 MAO A KO mice were analyzed using Partek Genomics Suite and Ingenuity Pathways Analysis to identify genes differentially expressed versus wild-type and assess their functions and relationships. The number of significant differentially expressed genes (DEGs) varied with age: P1 (664) and P7 (3307) [false discovery rate (FDR) <0.05, fold-change (FC) >1.5 for autism-linked genes and >2.0 for functionally categorized genes]. Eight autism linked genes were differentially expressed in P1 (upregulated: NLGN3, SLC6A2; down-regulated: HTR2C, MET, ADSL, MECP2, ALDH5A1, GRIN3B) while four autism-linked genes were differentially expressed at P7 (upregulated: HTR2B; downregulated: GRIN2D, GRIN2B, CHRNA4). Many other genes involved in neurodevelopment, apoptosis, neurotransmission, and cognitive function were differentially expressed at P7 in MAO A KO mice. This result suggests that modulation of these genes by the increased serotonin may lead to neurodevelopmental alteration in MAO A KO mice and results in autistic-like behaviors. (C) 2017 Elsevier B.V. All rights reserved.
Association of candidate gene polymorphisms with diastolic blood pressure change in patients treated with duloxetine
PSYCHIATRY RESEARCH
Authors: Fijal, Bonnie Ann; Kohler, Jared; Ostbye, Katherine; Ahl, Jonna; Houston, John Phillip
Abstract
Single nucleotide polymorphisms in six genes were investigated for an association between diastolic blood pressure change and duloxetine treatment. Nominally significant within-gene association was found with SLC6A2 rs4436775 and rs4564560 and HTR2A rs6313, but after adjusting for multiple comparisons, these associations were no longer significant. (C) 2012 Elsevier Ireland Ltd. All rights reserved.