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Published in: NeuroMolecular Medicine 1/2011

Open Access 01-03-2011 | Original Paper

Functional Genomics of Serotonin Receptor 2A (HTR2A): Interaction of Polymorphism, Methylation, Expression and Disease Association

Authors: Virginia R. Falkenberg, Brian M. Gurbaxani, Elizabeth R. Unger, Mangalathu S. Rajeevan

Published in: NeuroMolecular Medicine | Issue 1/2011

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Abstract

Serotonergic neurotransmission plays a key role in the pathophysiology of neuropsychiatric illnesses. The functional significance of a promoter polymorphism, −1438G/A (rs6311), in one of the major genes of this system (serotonin receptor 2A, HTR2A) remains poorly understood in the context of epigenetic factors, transcription factors and endocrine influences. We used functional and structural equation modeling (SEM) approaches to assess the contributions of the polymorphism (rs6311), DNA methylation and clinical variables to HTR2A expression in chronic fatigue syndrome (CFS) subjects from a population-based study. HTR2A was up-regulated in CFS through allele-specific expression modulated by transcription factors at critical sites in its promoter: an E47 binding site at position −1,438, (created by the A-allele of rs6311 polymorphism), a glucocorticoid receptor (GR) binding site encompassing a CpG at position −1,420, and Sp1 binding at CpG methylation site −1,224. Methylation at −1,420 was strongly correlated with methylation at −1,439, a CpG site that is dependent upon the G-allele of rs6311 at position −1,438. SEM revealed a strong negative interaction between E47 and GR binding (in conjunction with cortisol level) on HTR2A expression. This study suggests that the promoter polymorphism (rs6311) can affect both transcription factor binding and promoter methylation, and this along with an individual’s stress response can impact the rate of HTR2A transcription in a genotype and methylation-dependent manner. This study can serve as an example for deciphering the molecular determinants of transcriptional regulation of major genes of medical importance by integrating functional genomics and SEM approaches. Confirmation in an independent study population is required.
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Literature
go back to reference Cartharius, K., Frech, K., Grote, K., Klocke, B., Haltmeier, M., Klingenhoff, A., et al. (2005). MatInspector and beyond: Promoter analysis based on transcription factor binding sites. Bioinformatics, 21, 2933–2942.PubMedCrossRef Cartharius, K., Frech, K., Grote, K., Klocke, B., Haltmeier, M., Klingenhoff, A., et al. (2005). MatInspector and beyond: Promoter analysis based on transcription factor binding sites. Bioinformatics, 21, 2933–2942.PubMedCrossRef
go back to reference Cleare, A. J. (2003). The neuroendocrinology of chronic fatigue syndrome. Endocrine Reviews, 24, 236–252.PubMed Cleare, A. J. (2003). The neuroendocrinology of chronic fatigue syndrome. Endocrine Reviews, 24, 236–252.PubMed
go back to reference Cleare, A. J., Bearn, J., Allain, T., McGregor, A., Wessely, S., Murray, R. M., et al. (1995). Contrasting neuroendocrine responses in depression and chronic fatigue syndrome. Journal of Affective Disorders, 34, 283–289.PubMedCrossRef Cleare, A. J., Bearn, J., Allain, T., McGregor, A., Wessely, S., Murray, R. M., et al. (1995). Contrasting neuroendocrine responses in depression and chronic fatigue syndrome. Journal of Affective Disorders, 34, 283–289.PubMedCrossRef
go back to reference Falkenberg, V. R., & Rajeevan, M. S. (2010). Identification of a potential molecular link between the glucocorticoid and serotonergic signaling systems. Journal of Molecular Neuroscience, 41, 322–327.PubMedCrossRef Falkenberg, V. R., & Rajeevan, M. S. (2010). Identification of a potential molecular link between the glucocorticoid and serotonergic signaling systems. Journal of Molecular Neuroscience, 41, 322–327.PubMedCrossRef
go back to reference Gopalakrishnan, S., Van Emburgh, B. O., & Robertson, K. D. (2008). DNA methylation in development and human disease. Mutation Research, 647, 30–38.PubMed Gopalakrishnan, S., Van Emburgh, B. O., & Robertson, K. D. (2008). DNA methylation in development and human disease. Mutation Research, 647, 30–38.PubMed
go back to reference Heim, C., Ehlert, U., & Hellhammer, D. H. (2000). The potential role of hypocortisolism in the pathophysiology of stress-related bodily disorders. Psychoneuroendocrinolog, 25, 1–35.CrossRef Heim, C., Ehlert, U., & Hellhammer, D. H. (2000). The potential role of hypocortisolism in the pathophysiology of stress-related bodily disorders. Psychoneuroendocrinolog, 25, 1–35.CrossRef
go back to reference Knight, J. C. (2005). Regulatory polymorphisms underlying complex disease traits. Journal of Molecular Medicine, 83, 97–109.PubMedCrossRef Knight, J. C. (2005). Regulatory polymorphisms underlying complex disease traits. Journal of Molecular Medicine, 83, 97–109.PubMedCrossRef
go back to reference Lanfumey, L., Mongeau, R., Cohen-Salmon, C., & Hamon, M. (2008). Corticosteroid-serotonin interactions in the neurobiological mechanisms of stress-related disorders. Neuroscience and Biobehavioral Reviews, 32, 1174–1184.PubMedCrossRef Lanfumey, L., Mongeau, R., Cohen-Salmon, C., & Hamon, M. (2008). Corticosteroid-serotonin interactions in the neurobiological mechanisms of stress-related disorders. Neuroscience and Biobehavioral Reviews, 32, 1174–1184.PubMedCrossRef
go back to reference Le-Niculescu, H., Kurian, S. M., Yehyawi, N., Dike, C., Patel, S. D., Edenberg, H. J., et al. (2009). Identifying blood biomarkers for mood disorders using convergent functional genomics. Molecular Psychiatry, 14, 156–174.PubMedCrossRef Le-Niculescu, H., Kurian, S. M., Yehyawi, N., Dike, C., Patel, S. D., Edenberg, H. J., et al. (2009). Identifying blood biomarkers for mood disorders using convergent functional genomics. Molecular Psychiatry, 14, 156–174.PubMedCrossRef
go back to reference Li, D., & He, L. (2008). Meta-study on association between the monoamine oxidase A gene (MAOA) and schizophrenia. American Journal of Medical Genetics. Part B, Neuropsychiatric Genetics, 147B, 174–178.CrossRef Li, D., & He, L. (2008). Meta-study on association between the monoamine oxidase A gene (MAOA) and schizophrenia. American Journal of Medical Genetics. Part B, Neuropsychiatric Genetics, 147B, 174–178.CrossRef
go back to reference Lister-Williams, R. H., Ferrier, I. N., & Young, A. H. (1998). Mood and neuropsychological function in depression: The role of corticosteroids and serotonin. Psychological Medicine, 28, 573–584.CrossRef Lister-Williams, R. H., Ferrier, I. N., & Young, A. H. (1998). Mood and neuropsychological function in depression: The role of corticosteroids and serotonin. Psychological Medicine, 28, 573–584.CrossRef
go back to reference Miles, J. (2003). A framework for power analysis using a structural equation modelling procedure. BMC Medical Research Methodology, 3, 27.PubMedCrossRef Miles, J. (2003). A framework for power analysis using a structural equation modelling procedure. BMC Medical Research Methodology, 3, 27.PubMedCrossRef
go back to reference Myers, R. L., Airey, D. C., Manier, D. H., Shelton, R. C., & Sanders-Bush, E. (2007). Polymorphisms in the regulatory region of the human serotonin 5-HT2A receptor gene (HTR2A) influence gene expression. Biological Psychiatry, 61, 167–173.PubMedCrossRef Myers, R. L., Airey, D. C., Manier, D. H., Shelton, R. C., & Sanders-Bush, E. (2007). Polymorphisms in the regulatory region of the human serotonin 5-HT2A receptor gene (HTR2A) influence gene expression. Biological Psychiatry, 61, 167–173.PubMedCrossRef
go back to reference Norton, N., & Owen, M. J. (2005). HTR2A: association and expression studies in neuropsychiatric genetics. Annals of Medicine, 37, 121–129.PubMedCrossRef Norton, N., & Owen, M. J. (2005). HTR2A: association and expression studies in neuropsychiatric genetics. Annals of Medicine, 37, 121–129.PubMedCrossRef
go back to reference Parsons, M. J., D’Souza, U. M., Arranz, M. J., Kerwin, R. W., & Makoff, A. J. (2004). The -1438A/G polymorphism in the 5-hydroxytryptamine type 2A receptor gene affects promoter activity. Biological Psychiatry, 56, 406–410.PubMedCrossRef Parsons, M. J., D’Souza, U. M., Arranz, M. J., Kerwin, R. W., & Makoff, A. J. (2004). The -1438A/G polymorphism in the 5-hydroxytryptamine type 2A receptor gene affects promoter activity. Biological Psychiatry, 56, 406–410.PubMedCrossRef
go back to reference Philibert, R. A., Sandhu, H., Hollenbeck, N., Gunter, T., Adams, W., & Madan, A. (2008). The relationship of 5HTT (SLC6A4) methylation and genotype on mRNA expression and liability to major depression and alcohol dependence in subjects from the Iowa Adoption Studies. American Journal of Medical Genetics. Part B, Neuropsychiatric Genetics, 147B, 543–549.CrossRef Philibert, R. A., Sandhu, H., Hollenbeck, N., Gunter, T., Adams, W., & Madan, A. (2008). The relationship of 5HTT (SLC6A4) methylation and genotype on mRNA expression and liability to major depression and alcohol dependence in subjects from the Iowa Adoption Studies. American Journal of Medical Genetics. Part B, Neuropsychiatric Genetics, 147B, 543–549.CrossRef
go back to reference Polesskaya, O. O., Aston, C., & Sokolov, B. P. (2006). Allele C-specific methylation of the 5-HT2A receptor gene: Evidence for correlation with its expression and expression of DNA methylase DNMT1. Journal of Neuroscience Research, 83, 362–373.PubMedCrossRef Polesskaya, O. O., Aston, C., & Sokolov, B. P. (2006). Allele C-specific methylation of the 5-HT2A receptor gene: Evidence for correlation with its expression and expression of DNA methylase DNMT1. Journal of Neuroscience Research, 83, 362–373.PubMedCrossRef
go back to reference Porter, R. J., Gallagher, P., Watson, S., & Young, A. H. (2004). Corticosteroid-serotonin interactions in depression: A review of the human evidence. Psychopharmacology, (Berl), 173, 1–17.CrossRef Porter, R. J., Gallagher, P., Watson, S., & Young, A. H. (2004). Corticosteroid-serotonin interactions in depression: A review of the human evidence. Psychopharmacology, (Berl), 173, 1–17.CrossRef
go back to reference Rajeevan, M. S., Swan, D. C., Duncan, K., Lee, D. R., Limor, J. R., & Unger, E. R. (2006). Quantitation of site-specific HPV 16 DNA methylation by pyrosequencing. Journal of Virological Methods, 138, 170–176.PubMedCrossRef Rajeevan, M. S., Swan, D. C., Duncan, K., Lee, D. R., Limor, J. R., & Unger, E. R. (2006). Quantitation of site-specific HPV 16 DNA methylation by pyrosequencing. Journal of Virological Methods, 138, 170–176.PubMedCrossRef
go back to reference Reeves, W. C., Wagner, D., Nisenbaum, R., Jones, J. F., Gurbaxani, B., Solomon, L., et al. (2005). Chronic fatigue syndrome—a clinically empirical approach to its definition and study. BMC Medicine, 3, 19.PubMedCrossRef Reeves, W. C., Wagner, D., Nisenbaum, R., Jones, J. F., Gurbaxani, B., Solomon, L., et al. (2005). Chronic fatigue syndrome—a clinically empirical approach to its definition and study. BMC Medicine, 3, 19.PubMedCrossRef
go back to reference Reiner, A., Yekutieli, D., & Benjamini, Y. (2003). Identifying differentially expressed genes using false discovery rate controlling procedures. Bioinformatics, 19, 368–375.PubMedCrossRef Reiner, A., Yekutieli, D., & Benjamini, Y. (2003). Identifying differentially expressed genes using false discovery rate controlling procedures. Bioinformatics, 19, 368–375.PubMedCrossRef
go back to reference Schreiber, J. B. (2008). Core reporting practices in structural equation modeling. Research in Social and Administrative Pharmacy, 4, 83–97.PubMedCrossRef Schreiber, J. B. (2008). Core reporting practices in structural equation modeling. Research in Social and Administrative Pharmacy, 4, 83–97.PubMedCrossRef
go back to reference Smith, A. K., Dimulescu, I., Falkenberg, V. R., Narasimhan, S., Heim, C., Vernon, S. D., et al. (2008). Genetic evaluation of the serotonergic system in chronic fatigue syndrome. Psychoneuroendocrinology, 33, 188–197.PubMedCrossRef Smith, A. K., Dimulescu, I., Falkenberg, V. R., Narasimhan, S., Heim, C., Vernon, S. D., et al. (2008). Genetic evaluation of the serotonergic system in chronic fatigue syndrome. Psychoneuroendocrinology, 33, 188–197.PubMedCrossRef
go back to reference Smith, A. K., Maloney, E. M., Falkenberg, V. R., Dimulescu, I., & Rajeevan, M. S. (2009). An angiotensin-1 converting enzyme polymorphism is associated with allostatic load mediated by C-reactive protein, interleukin-6 and cortisol. Psychoneuroendocrinology, 34, 597–606.PubMedCrossRef Smith, A. K., Maloney, E. M., Falkenberg, V. R., Dimulescu, I., & Rajeevan, M. S. (2009). An angiotensin-1 converting enzyme polymorphism is associated with allostatic load mediated by C-reactive protein, interleukin-6 and cortisol. Psychoneuroendocrinology, 34, 597–606.PubMedCrossRef
go back to reference Sorensen, B., Jones, J. F., Vernon, S. D., & Rajeevan, M. S. (2009). Transcriptional control of complement activation in an exercise model of chronic fatigue syndrome. Molecular Medicine, 15, 34–42.PubMed Sorensen, B., Jones, J. F., Vernon, S. D., & Rajeevan, M. S. (2009). Transcriptional control of complement activation in an exercise model of chronic fatigue syndrome. Molecular Medicine, 15, 34–42.PubMed
go back to reference Uher, R., & McGuffin, P. (2008). The moderation by the serotonin transporter gene of environmental adversity in the aetiology of mental illness: Review and methodological analysis. Molecular Psychiatry, 13, 131–146.PubMedCrossRef Uher, R., & McGuffin, P. (2008). The moderation by the serotonin transporter gene of environmental adversity in the aetiology of mental illness: Review and methodological analysis. Molecular Psychiatry, 13, 131–146.PubMedCrossRef
go back to reference Vernon, S. D., & Reeves, W. C. (2006). The challenge of integrating disparate high-content data: Epidemiological, clinical and laboratory data collected during an in-hospital study of chronic fatigue syndrome. Pharmacogenomics, 7, 345–354.PubMedCrossRef Vernon, S. D., & Reeves, W. C. (2006). The challenge of integrating disparate high-content data: Epidemiological, clinical and laboratory data collected during an in-hospital study of chronic fatigue syndrome. Pharmacogenomics, 7, 345–354.PubMedCrossRef
go back to reference Zhu, Q. S., Chen, K., & Shih, J. C. (1995). Characterization of the human 5-HT2A receptor gene promoter. Journal of Neuroscience, 15, 4885–4895.PubMed Zhu, Q. S., Chen, K., & Shih, J. C. (1995). Characterization of the human 5-HT2A receptor gene promoter. Journal of Neuroscience, 15, 4885–4895.PubMed
Metadata
Title
Functional Genomics of Serotonin Receptor 2A (HTR2A): Interaction of Polymorphism, Methylation, Expression and Disease Association
Authors
Virginia R. Falkenberg
Brian M. Gurbaxani
Elizabeth R. Unger
Mangalathu S. Rajeevan
Publication date
01-03-2011
Publisher
Humana Press Inc
Published in
NeuroMolecular Medicine / Issue 1/2011
Print ISSN: 1535-1084
Electronic ISSN: 1559-1174
DOI
https://doi.org/10.1007/s12017-010-8138-2

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