An environmental analysis of genes associated with schizophrenia: hypoxia and vascular factors as interacting elements in the neurodevelopmental model
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J. Os | H. Steinbusch | R. Schmidt-Kastner | B. Rutten | R Schmidt-Kastner | J van Os | G Esquivel | H W M Steinbusch | B P F Rutten | R. Schmidt‐Kastner | G. Esquivel | J. Os
[1] D. Campion,et al. Early neurological phenotype in 4 children with biallelic PRODH mutations , 2007, Brain and Development.
[2] G. Semenza. HIF-1 and mechanisms of hypoxia sensing. , 2001, Current opinion in cell biology.
[3] F. Tortella,et al. Microarray analysis of acute and delayed gene expression profile in rats after focal ischemic brain injury and reperfusion , 2004, Journal of neuroscience research.
[4] S Marenco,et al. Serious obstetric complications interact with hypoxia-regulated/vascular-expression genes to influence schizophrenia risk , 2008, Molecular Psychiatry.
[5] A. Serretti,et al. The Impact of Heat Shock Protein 70 Gene Variations on Clinical Presentation and Outcome in Schizophrenic Inpatients , 2009, Neuropsychobiology.
[6] K. Kishimoto,et al. Immunohistochemical detection of dysbindin at the astroglial endfeet around the capillaries of mouse brain , 2009, Journal of Molecular Histology.
[7] Thomas W. Mühleisen,et al. Large recurrent microdeletions associated with schizophrenia , 2008, Nature.
[8] J. O’Sullivan,et al. Generation of an epigenetic signature by chronic hypoxia in prostate cells. , 2009, Human molecular genetics.
[9] R Kucherlapati,et al. Converging evidence for a pseudoautosomal cytokine receptor gene locus in schizophrenia , 2007, Molecular Psychiatry.
[10] J. Os,et al. ARE PSYCHOTIC PSYCHOPATHOLOGY AND NEUROCOGNITION ORTHOGONAL? A SYSTEMATIC REVIEW OF THEIR ASSOCIATIONS , 2008, Schizophrenia Research.
[11] M C O'Donovan,et al. A genome-wide association study in 574 schizophrenia trios using DNA pooling , 2009, Molecular Psychiatry.
[12] N. Craddock,et al. Genome-Wide Association Study of Schizophrenia in a Japanese Population , 2011, Biological Psychiatry.
[13] Peter B. Jones,et al. Obstetric complications and schizophrenia: historical and meta-analytic review. , 2002, The American journal of psychiatry.
[14] Tao Li,et al. Genome-Wide Association Identifies a Common Variant in the Reelin Gene That Increases the Risk of Schizophrenia Only in Women , 2008, PLoS genetics.
[15] Jess Li,et al. Vascular endothelial cells synthesize and secrete brain‐derived neurotrophic factor , 2000, FEBS letters.
[16] M. Loeken,et al. Hypoxic stress in diabetic pregnancy contributes to impaired embryo gene expression and defective development by inducing oxidative stress. , 2005, American journal of physiology. Endocrinology and metabolism.
[17] S. Mousa,et al. Role of non-neuronal nicotinic acetylcholine receptors in angiogenesis. , 2009, The international journal of biochemistry & cell biology.
[18] I. Agartz,et al. No effect of obstetric complications on basal ganglia volumes in schizophrenia , 2010, Progress in Neuro-Psychopharmacology and Biological Psychiatry.
[19] Raquel E. Gur,et al. Strong synaptic transmission impact by copy number variations in schizophrenia , 2010, Proceedings of the National Academy of Sciences.
[20] L. Gallagher,et al. Copy-number variants in neurodevelopmental disorders: promises and challenges. , 2009, Trends in genetics : TIG.
[21] Adrian L Harris,et al. Hypoxia-regulated differentiation: let's step it up a Notch. , 2006, Trends in molecular medicine.
[22] P. Visscher,et al. Rare chromosomal deletions and duplications increase risk of schizophrenia , 2008, Nature.
[23] A. Harris,et al. Role of Hypoxia‐Inducible Factors in Epigenetic Regulation via Histone Demethylases , 2009, Annals of the New York Academy of Sciences.
[24] C. Spencer,et al. Identification of loci associated with schizophrenia by genome-wide association and follow-up , 2008, Nature Genetics.
[25] A. McCann,et al. Epigenetics: The epicenter of the hypoxic response , 2010, Epigenetics.
[26] Paul J. Harrison,et al. Schizophrenia genes, gene expression, and neuropathology: on the matter of their convergence , 2005, Molecular Psychiatry.
[27] G. Camenisch,et al. Integration of Oxygen Signaling at the Consensus HRE , 2005, Science's STKE.
[28] D. Rujescu,et al. GWA study data mining and independent replication identify cardiomyopathy-associated 5 (CMYA5) as a risk gene for schizophrenia , 2011, Molecular Psychiatry.
[29] G. Kirov,et al. Support for the involvement of large copy number variants in the pathogenesis of schizophrenia. , 2009, Human molecular genetics.
[30] P. Visscher,et al. Common polygenic variation contributes to risk of schizophrenia and bipolar disorder , 2009, Nature.
[31] John P A Ioannidis,et al. Systematic meta-analyses and field synopsis of genetic association studies in schizophrenia: the SzGene database , 2008, Nature Genetics.
[32] J. Perez-polo,et al. Impaired migration signaling in the hippocampus following prenatal hypoxia , 2009, Neuropharmacology.
[33] Bart P F Rutten,et al. Epigenetic mediation of environmental influences in major psychotic disorders. , 2009, Schizophrenia bulletin.
[34] T. Yamashima,et al. Translocation and Down‐Regulation of Protein Kinase C‐α, ‐β, and ‐γ Isoforms During Ischemia‐Reperfusion in Rat Brain , 1999 .
[35] Tyrone D. Cannon,et al. Decreased Neurotrophic Response to Birth Hypoxia in the Etiology of Schizophrenia , 2008, Biological Psychiatry.
[36] Jim van Os,et al. The environment and schizophrenia , 2010, Nature.
[37] M C O'Donovan,et al. Analysis of 10 independent samples provides evidence for association between schizophrenia and a SNP flanking fibroblast growth factor receptor 2 , 2009, Molecular Psychiatry.
[38] J. Arbeit,et al. Hypoxia-inducible factor-1alpha suppresses squamous carcinogenic progression and epithelial-mesenchymal transition. , 2009, Cancer research.
[39] K. Jin,et al. Reelin-deficient mice show impaired neurogenesis and increased stroke size , 2006, Experimental Neurology.
[40] Stephen W Scherer,et al. Copy number variations in schizophrenia: critical review and new perspectives on concepts of genetics and disease. , 2010, The American journal of psychiatry.
[41] P. Ratcliffe,et al. Regulation of Jumonji-domain-containing histone demethylases by hypoxia-inducible factor (HIF)-1alpha. , 2008, The Biochemical journal.
[42] Fred H. Gage,et al. Modelling schizophrenia using human induced pluripotent stem cells , 2011, Nature.
[43] E. Maltepe,et al. Oxygen, genes, and development: An analysis of the role of hypoxic gene regulation during murine vascular development , 1998, Journal of Molecular Medicine.
[44] K. Plate,et al. Different networks, common growth factors: shared growth factors and receptors of the vascular and the nervous system , 2007, Acta Neuropathologica.
[45] G. Abecasis,et al. Nogo Receptor 1 (RTN4R) as a Candidate Gene for Schizophrenia: Analysis Using Human and Mouse Genetic Approaches , 2007, PloS one.
[46] Anders D. Børglum,et al. Genome-wide association study identifies five new schizophrenia loci , 2011, Nature Genetics.
[47] I. Agartz,et al. Cerebral cortical thickness and a history of obstetric complications in schizophrenia. , 2009, Journal of psychiatric research.
[48] J. Buizer-Voskamp,et al. Recurrent CNVs disrupt three candidate genes in schizophrenia patients. , 2008, American journal of human genetics.
[49] S. Strittmatter,et al. Identification of a receptor necessary for Nogo-B stimulated chemotaxis and morphogenesis of endothelial cells. , 2006, Proceedings of the National Academy of Sciences of the United States of America.
[50] Brad T. Sherman,et al. DAVID: Database for Annotation, Visualization, and Integrated Discovery , 2003, Genome Biology.
[51] Brad T. Sherman,et al. Systematic and integrative analysis of large gene lists using DAVID bioinformatics resources , 2008, Nature Protocols.
[52] A. Singleton,et al. Rare Structural Variants Disrupt Multiple Genes in Neurodevelopmental Pathways in Schizophrenia , 2008, Science.
[53] Edouard Henrion,et al. A Population Genetic Approach to Mapping Neurological Disorder Genes Using Deep Resequencing , 2011, PLoS genetics.
[54] D. Rujescu,et al. Evidence for rare and common genetic risk variants for schizophrenia at protein kinase C, alpha , 2010, Molecular Psychiatry.
[55] H. Verdoux,et al. Time between schizophrenia onset and first request for disability status in France and associated patient characteristics. , 2007, Psychiatric services.
[56] Edwin H. Cook,et al. Copy-number variations associated with neuropsychiatric conditions , 2008, Nature.
[57] Jianxin Shi,et al. Copy number variants in schizophrenia: confirmation of five previous findings and new evidence for 3q29 microdeletions and VIPR2 duplications. , 2011, The American journal of psychiatry.
[58] N. Craddock,et al. Gene-wide analyses of genome-wide association data sets: evidence for multiple common risk alleles for schizophrenia and bipolar disorder and for overlap in genetic risk , 2009, Molecular Psychiatry.
[59] K L Evans,et al. Interacting haplotypes at the NPAS3 locus alter risk of schizophrenia and bipolar disorder , 2009, Molecular Psychiatry.
[60] Murray J. Cairns,et al. Upregulation of Dicer and MicroRNA Expression in the Dorsolateral Prefrontal Cortex Brodmann Area 46 in Schizophrenia , 2011, Biological Psychiatry.
[61] Jacques Corbeil,et al. Comparative gene expression analysis of blood and brain provides concurrent validation of SELENBP1 up-regulation in schizophrenia , 2005, Proceedings of the National Academy of Sciences of the United States of America.
[62] R. Jaenisch,et al. DNA Methyltransferase Contributes to Delayed Ischemic Brain Injury , 2000, The Journal of Neuroscience.
[63] Hai-Gwo Hwu,et al. Family-based association study of SELENBP1 in schizophrenia , 2009, Schizophrenia Research.
[64] K. Bertrand,et al. Induction of DNA Hypomethylation by Tumor Hypoxia , 2007, Epigenetics.
[65] R. Barber,et al. Identification of potential stroke targets by lentiviral vector mediated overexpression of HIF-1 alpha and HIF-2 alpha in a primary neuronal model of hypoxia. , 2004, Journal of cerebral blood flow and metabolism : official journal of the International Society of Cerebral Blood Flow and Metabolism.
[66] Deanna Greenstein,et al. Catechol-o-methyl transferase (COMT) val158met polymorphism and adolescent cortical development in patients with childhood-onset schizophrenia, their non-psychotic siblings, and healthy controls , 2011, NeuroImage.
[67] Sun-Chong Wang,et al. Epigenomic profiling reveals DNA-methylation changes associated with major psychosis. , 2008, American journal of human genetics.
[68] R. Spielman,et al. Gene expression and genetic variation in response to endoplasmic reticulum stress in human cells. , 2010, American journal of human genetics.
[69] Y. Shinohara,et al. Post-ischemic delayed expression of hepatocyte growth factor and c-Met in mouse brain following focal cerebral ischemia , 2004, Brain Research.
[70] J. Gogos,et al. Schizophrenia susceptibility genes: emergence of positional candidates and future directions. , 2006, Trends in pharmacological sciences.
[71] H. Chung,et al. Determination of hypoxic region by hypoxia marker in developing mouse embryos in vivo: A possible signal for vessel development , 2001, Developmental dynamics : an official publication of the American Association of Anatomists.
[72] Jinchuan Xing,et al. Genetic Evidence for High-Altitude Adaptation in Tibet , 2010, Science.
[73] H Nawa,et al. Cytokine and growth factor involvement in schizophrenia—support for the developmental model , 2000, Molecular Psychiatry.
[74] O. Andreassen,et al. An exploratory model for G × E interaction on hippocampal volume in schizophrenia; obstetric complications and hypoxia-related genes , 2010, Progress in Neuro-Psychopharmacology and Biological Psychiatry.
[75] M C O'Donovan,et al. The molecular genetics of schizophrenia: new findings promise new insights , 2004, Molecular Psychiatry.
[76] M. Tsuang,et al. Hypoxic-ischemia-related fetal/neonatal complications and risk of schizophrenia and other nonaffective psychoses: a 19-year longitudinal study. , 2000, The American journal of psychiatry.
[77] Dean Y. Li,et al. Ccm1 is required for arterial morphogenesis: implications for the etiology of human cavernous malformations , 2004, Development.
[78] P. Cejudo-Martı́n,et al. A new notch in the HIF belt: how hypoxia impacts differentiation. , 2005, Developmental cell.
[79] Jiankun Cui,et al. Brain-Specific Knock-Out of Hypoxia-Inducible Factor-1α Reduces Rather Than Increases Hypoxic-Ischemic Damage , 2005, The Journal of Neuroscience.
[80] R. Kahn. Faculty Opinions recommendation of A primate-specific, brain isoform of KCNH2 affects cortical physiology, cognition, neuronal repolarization and risk of schizophrenia. , 2009 .
[81] R. Schmidt-Kastner,et al. DNA microarray analysis of cortical gene expression during early recirculation after focal brain ischemia in rat. , 2002, Brain research. Molecular brain research.
[82] G. Kirov,et al. Finding schizophrenia genes. , 2005, The Journal of clinical investigation.
[83] A. Meyer-Lindenberg,et al. Genetic variation in AKT1 is linked to dopamine-associated prefrontal cortical structure and function in humans. , 2008, The Journal of clinical investigation.
[84] Xi Chen,et al. Jmjd1a and Jmjd2c histone H3 Lys 9 demethylases regulate self-renewal in embryonic stem cells. , 2007, Genes & development.
[85] P Shaw,et al. Neuregulin 1 (8p12) and childhood-onset schizophrenia: susceptibility haplotypes for diagnosis and brain developmental trajectories , 2007, Molecular Psychiatry.
[86] M. O’Donovan,et al. Hypothesis-driven candidate genes for schizophrenia compared to genome-wide association results , 2011, Psychological Medicine.
[87] Oili Salonen,et al. Fetal hypoxia and structural brain abnormalities in schizophrenic patients, their siblings, and controls. , 2002, Archives of general psychiatry.
[88] Jianxin Shi,et al. Common variants on chromosome 6p22.1 are associated with schizophrenia , 2009, Nature.
[89] David A Lewis,et al. Schizophrenia as a disorder of neurodevelopment. , 2002, Annual review of neuroscience.
[90] C. Schmitz,et al. Hypoxia-regulated components of the U4/U6.U5 tri-small nuclear riboprotein complex: possible role in autosomal dominant retinitis pigmentosa , 2008, Molecular vision.
[91] Pall I. Olason,et al. Common variants conferring risk of schizophrenia , 2009, Nature.
[92] Kristin S. Cadenhead,et al. Obstetrical complications in people at risk for developing schizophrenia , 2008, Schizophrenia Research.
[93] A. Minelli,et al. New Copy Number Variations in Schizophrenia , 2010, PloS one.
[94] G. Rouleau,et al. Association of NPAS3 exonic variation with schizophrenia , 2010, Schizophrenia Research.
[95] Wei Li,et al. Integrative analysis of HIF binding and transactivation reveals its role in maintaining histone methylation homeostasis , 2009, Proceedings of the National Academy of Sciences.
[96] R. Belmaker,et al. Oxygen restriction of neonate rats elevates neuregulin-1α isoform levels: Possible relationship to schizophrenia , 2007, Neurochemistry International.
[97] M. Cannon,et al. Risk for schizophrenia — broadening the concepts, pushing back the boundaries , 2005, Schizophrenia Research.
[98] A. Giaccia,et al. Hypoxic microenvironment within an embryo induces apoptosis and is essential for proper morphological development. , 1999, Teratology.
[99] Y. Ahn,et al. AKT1 Gene Polymorphisms and Obstetric Complications in the Patients with Schizophrenia , 2009, Psychiatry investigation.
[100] M C O'Donovan,et al. Functional gene group analysis identifies synaptic gene groups as risk factor for schizophrenia , 2011, Molecular Psychiatry.
[101] G. Lewis,et al. Investigating whether adverse prenatal and perinatal events are associated with non-clinical psychotic symptoms at age 12 years in the ALSPAC birth cohort , 2009, Psychological Medicine.
[102] Robert D. Barber,et al. Identification of Potential Stroke Targets by Lentiviral Vector Mediated Overexpression of HIF-1α and HIF-2α in a Primary Neuronal Model of Hypoxia , 2004 .
[103] G. Kirov,et al. Copy Number Variation in Schizophrenia in the Japanese Population , 2010, Biological Psychiatry.
[104] G. Semenza,et al. Hypoxia-Inducible Factor 1 (HIF-1) Pathway , 2007, Science's STKE.
[105] Celso Arango,et al. Obstetric complications as a risk factor for first psychotic episodes in childhood and adolescence , 2009, European Child & Adolescent Psychiatry.
[106] Tyrone D. Cannon,et al. Gene-environment interaction and covariation in schizophrenia: the role of obstetric complications. , 2008, Schizophrenia bulletin.
[107] A. Harris,et al. Hypoxia response and microRNAs: no longer two separate worlds , 2008, Journal of cellular and molecular medicine.
[108] Arthur W Toga,et al. DTNBP1 is associated with imaging phenotypes in schizophrenia , 2009, Human brain mapping.
[109] G. Lewis,et al. Association of measures of fetal and childhood growth with non-clinical psychotic symptoms in 12-year-olds: the ALSPAC cohort , 2009, British Journal of Psychiatry.
[110] Robin M. Murray,et al. A developmental model for similarities and dissimilarities between schizophrenia and bipolar disorder , 2004, Schizophrenia Research.
[111] J. Lieberman,et al. Cross-Disorder Genomewide Analysis of Schizophrenia , Bipolar Disorder , and Depression AJP in Advance , 2010 .
[112] F. Muntoni,et al. MLC1 is associated with the Dystrophin-Glycoprotein Complex at astrocytic endfeet , 2007, Acta Neuropathologica.
[113] H. Okano,et al. Enhanced neurogenesis in the ischemic striatum following EGF-induced expansion of transit-amplifying cells in the subventricular zone , 2006, Neuroscience Letters.
[114] P. Mortensen,et al. Obstetric conditions and risk of first admission with schizophrenia: A Danish national register based study , 2007, Schizophrenia Research.
[115] R. Kahn,et al. Effects of brain‐derived neurotrophic factor Val66Met polymorphism on hippocampal volume change in schizophrenia , 2010, Hippocampus.
[116] J. Sebat,et al. Rare structural variants in schizophrenia: one disorder, multiple mutations; one mutation, multiple disorders. , 2009, Trends in genetics : TIG.
[117] P. DeRosse,et al. Association of genetic variation in the MET proto-oncogene with schizophrenia and general cognitive ability. , 2010, The American journal of psychiatry.
[118] M C O'Donovan,et al. Schizophrenia susceptibility alleles are enriched for alleles that affect gene expression in adult human brain , 2012, Molecular Psychiatry.
[119] T. Dörk,et al. Neuregulin-1, the fetal endothelium, and brain damage in preterm newborns , 2010, Brain, Behavior, and Immunity.
[120] Akira Sawa,et al. Understanding the Role of DISC1 in Psychiatric Disease and during Normal Development , 2009, The Journal of Neuroscience.
[121] David B. Goldstein,et al. A Genome-Wide Investigation of SNPs and CNVs in Schizophrenia , 2009, PLoS genetics.
[122] J. Lieberman,et al. Genomewide association for schizophrenia in the CATIE study: results of stage 1 , 2009, Molecular Psychiatry.
[123] Michael F. Green,et al. Analysis of 94 candidate genes and 12 endophenotypes for schizophrenia from the Consortium on the Genetics of Schizophrenia. , 2011, The American journal of psychiatry.
[124] S. Rana,et al. Temporal Differences in MicroRNA Expression Patterns in Astrocytes and Neurons after Ischemic Injury , 2011, PloS one.
[125] Asan,et al. Sequencing of 50 Human Exomes Reveals Adaptation to High Altitude , 2010, Science.
[126] Christoph Schmitz,et al. Gene regulation by hypoxia and the neurodevelopmental origin of schizophrenia , 2006, Schizophrenia Research.
[127] Jens Vilstrup Johansen,et al. The Histone Demethylases JMJD1A and JMJD2B Are Transcriptional Targets of Hypoxia-inducible Factor HIF* , 2008, Journal of Biological Chemistry.
[128] G. Semenza,et al. Transcriptional regulation of vascular endothelial cell responses to hypoxia by HIF-1. , 2005, Blood.
[129] R. Weller. Iatrogenic transmission of Creutzfeldt-Jakob disease , 1989, Psychological Medicine.