Neurodevelopmental disorders: mechanisms and boundary definitions from genomes, interactomes and proteomes
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S. K. Sanyal | J. Waddington | V. Faundez | A. Moreno-De-Luca | J L Waddington | A P Mullin | A Gokhale | A Moreno-De-Luca | S Sanyal | V Faundez | A. Mullin | A. Gokhale | A. Moreno-De-Luca
[1] Therapy of Marfan syndrome. , 2008, Annual review of medicine.
[2] O. Saitoh,et al. Association analysis between schizophrenia and the AP-3 complex genes , 2009, Neuroscience Research.
[3] S. Arnold,et al. Synaptic Dysbindin-1 Reductions in Schizophrenia Occur in an Isoform-Specific Manner Indicating Their Subsynaptic Location , 2011, PloS one.
[4] Christian Gilissen,et al. Homozygous and heterozygous disruptions of ANK3: at the crossroads of neurodevelopmental and psychiatric disorders. , 2013, Human molecular genetics.
[5] Naoki Oiso,et al. Hermansky-Pudlak syndrome type 7 (HPS-7) results from mutant dysbindin, a member of the biogenesis of lysosome-related organelles complex 1 (BLOC-1) , 2003, Nature Genetics.
[6] P. Visscher,et al. Common polygenic variation contributes to risk of schizophrenia and bipolar disorder , 2009, Nature.
[7] Y. Smith,et al. Roles of BLOC-1 and AP-3 complexes in cargo sorting to synaptic vesicles , 2009 .
[8] S. Scherer,et al. Rare exonic deletions implicate the synaptic organizer Gephyrin (GPHN) in risk for autism, schizophrenia and seizures. , 2013, Human molecular genetics.
[9] Christopher Gillberg,et al. Social cognition impairments in Asperger syndrome and schizophrenia , 2013, Schizophrenia Research.
[10] Catherine Lord,et al. Is schizophrenia on the autism spectrum? , 2011, Brain Research.
[11] V. Faundez,et al. Schizophrenia: The “BLOC” May Be in the Endosomes , 2009, Science Signaling.
[12] T. Insel,et al. Wesleyan University From the SelectedWorks of Charles A . Sanislow , Ph . D . 2010 Research Domain Criteria ( RDoC ) : Toward a New Classification Framework for Research on Mental Disorders , 2018 .
[13] D. Clair,et al. Association within a family of a balanced autosomal translocation with major mental illness , 1990, The Lancet.
[14] J. Falcón-Pérez,et al. BLOC-1 interacts with BLOC-2 and the AP-3 complex to facilitate protein trafficking on endosomes. , 2006, Molecular biology of the cell.
[15] S. Hyman,et al. The diagnosis of mental disorders: the problem of reification. , 2010, Annual review of clinical psychology.
[16] E. C. Dell'Angelica,et al. Identification of Snapin and Three Novel Proteins (BLOS1, BLOS2, and BLOS3/Reduced Pigmentation) as Subunits of Biogenesis of Lysosome-related Organelles Complex-1 (BLOC-1)* , 2004, Journal of Biological Chemistry.
[17] Laurent Mottron,et al. Truncating mutations in NRXN2 and NRXN1 in autism spectrum disorders and schizophrenia , 2011, Human Genetics.
[18] Raquel E Gur,et al. Dysbindin-1 is reduced in intrinsic, glutamatergic terminals of the hippocampal formation in schizophrenia. , 2004, The Journal of clinical investigation.
[19] M. Daly,et al. Identification of risk loci with shared effects on five major psychiatric disorders: a genome-wide analysis , 2013, The Lancet.
[20] David W. Andrews,et al. Removing bias against membrane proteins in interaction networks , 2011, BMC Systems Biology.
[21] Rachel Rudge,et al. Assembly and function of AP-3 complexes in cells expressing mutant subunits , 2002, The Journal of cell biology.
[22] S. Arnold,et al. Dysbindin-1 in dorsolateral prefrontal cortex of schizophrenia cases is reduced in an isoform-specific manner unrelated to dysbindin-1 mRNA expression. , 2009, Human molecular genetics.
[23] K. Kaibuchi,et al. Direct interaction of Dysbindin with the AP-3 complex via its μ subunit , 2009, Neurochemistry International.
[24] J. Shields,et al. A polygenic theory of schizophrenia. , 1972, Proceedings of the National Academy of Sciences of the United States of America.
[25] L. Monteggia,et al. Brain-Derived Neurotrophic Factor and Neuropsychiatric Disorders , 2012, Pharmacological Reviews.
[26] D. Rujescu,et al. Neurexin 1 (NRXN1) deletions in schizophrenia. , 2009, Schizophrenia bulletin.
[27] R. Straub,et al. Reduced DTNBP1 (dysbindin-1) mRNA in the hippocampal formation of schizophrenia patients , 2008, Schizophrenia Research.
[28] C. Lese-Martin,et al. Quantitative Proteomic and Genetic Analyses of the Schizophrenia Susceptibility Factor Dysbindin Identify Novel Roles of the Biogenesis of Lysosome-Related Organelles Complex 1 , 2012, The Journal of Neuroscience.
[29] Huda Y. Zoghbi,et al. The Story of Rett Syndrome: From Clinic to Neurobiology , 2007, Neuron.
[30] P. Sullivan. Puzzling over schizophrenia: Schizophrenia as a pathway disease , 2012, Nature Medicine.
[31] Baris Korkmaz,et al. Theory of Mind and Neurodevelopmental Disorders of Childhood , 2011, Pediatric Research.
[32] M. Bellgrove,et al. Neurodevelopmental and neuropsychiatric disorders represent an interconnected molecular system , 2014, Molecular Psychiatry.
[33] J. Sebat,et al. High Frequencies of De Novo CNVs in Bipolar Disorder and Schizophrenia , 2011, Neuron.
[34] M. Dunn,et al. The Neuroproteomics of Schizophrenia , 2011, Biological Psychiatry.
[35] J. Doherty,et al. Recent genomic advances in schizophrenia , 2012, Clinical genetics.
[36] Y. Smith,et al. Hermansky-Pudlak Protein Complexes, AP-3 and BLOC-1, Differentially Regulate Presynaptic Composition in the Striatum and Hippocampus , 2010, The Journal of Neuroscience.
[37] T Varilo,et al. Association of DISC1 with autism and Asperger syndrome , 2008, Molecular Psychiatry.
[38] J L Rapoport,et al. The neurodevelopmental model of schizophrenia: update 2005 , 2005, Molecular Psychiatry.
[39] M. Burmeister,et al. Mutation in AP-3 δ in the mocha Mouse Links Endosomal Transport to Storage Deficiency in Platelets, Melanosomes, and Synaptic Vesicles , 1998, Neuron.
[40] H. Dietz,et al. Lessons on the pathogenesis of aneurysm from heritable conditions , 2011, Nature.
[41] A. Reiss. Childhood developmental disorders: an academic and clinical convergence point for psychiatry, neurology, psychology and pediatrics. , 2009, Journal of child psychology and psychiatry, and allied disciplines.
[42] Craig C. Garner,et al. v-SNARE Composition Distinguishes Synaptic Vesicle Pools , 2011, Neuron.
[43] Zhongming Zhao,et al. Protein-protein interaction and pathway analyses of top schizophrenia genes reveal schizophrenia susceptibility genes converge on common molecular networks and enrichment of nucleosome (chromatin) assembly genes in schizophrenia susceptibility loci. , 2014, Schizophrenia bulletin.
[44] M. Daly,et al. Proteins Encoded in Genomic Regions Associated with Immune-Mediated Disease Physically Interact and Suggest Underlying Biology , 2011, PLoS genetics.
[45] D. Porteous,et al. DISC1 at 10: connecting psychiatric genetics and neuroscience. , 2011, Trends in molecular medicine.
[46] S. Arnold,et al. Dysbindin-1 and Its Protein Family , 2009 .
[47] Y. Smith,et al. The schizophrenia susceptibility factor dysbindin and its associated complex sort cargoes from cell bodies to the synapse , 2011, Molecular biology of the cell.
[48] Y. Hosoi,et al. Dysbindin-1, a Schizophrenia-Related Protein, Functionally Interacts with the DNA- Dependent Protein Kinase Complex in an Isoform-Dependent Manner , 2009, PloS one.
[49] D. Cohen,et al. MECP2 mutation in a boy with language disorder and schizophrenia. , 2002, The American journal of psychiatry.
[50] V. Faundez,et al. The WASH complex, an endosomal Arp2/3 activator, interacts with the Hermansky–Pudlak syndrome complex BLOC-1 and its cargo phosphatidylinositol-4-kinase type IIα , 2013, Molecular biology of the cell.
[51] J. Sebat,et al. CNVs: Harbingers of a Rare Variant Revolution in Psychiatric Genetics , 2012, Cell.
[52] Z. Otwinowski,et al. WASH and WAVE actin regulators of the Wiskott–Aldrich syndrome protein (WASP) family are controlled by analogous structurally related complexes , 2010, Proceedings of the National Academy of Sciences.
[53] 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.
[54] K. Kendler,et al. The dystrobrevin-binding protein 1 gene: features and networks , 2009, Molecular Psychiatry.
[55] Dan Xie,et al. Variation and Genetic Control of Protein Abundance in Humans , 2013, Nature.
[56] K. Kaibuchi,et al. Proteomic analysis reveals novel binding partners of dysbindin, a schizophrenia‐related protein , 2009, Journal of neurochemistry.
[57] David Adam,et al. Mental health: On the spectrum , 2013, Nature.
[58] H. Zoghbi,et al. Rett syndrome is caused by mutations in X-linked MECP2, encoding methyl-CpG-binding protein 2 , 1999, Nature Genetics.
[59] J N Giedd,et al. Neurodevelopmental model of schizophrenia: update 2012 , 2012, Molecular Psychiatry.
[60] Bradley P. Coe,et al. Sporadic autism exomes reveal a highly interconnected protein network of de novo mutations , 2012, Nature.
[61] D. Martins‐de‐Souza. Proteomics tackling schizophrenia as a pathway disorder. , 2012, Schizophrenia bulletin.
[62] K. Domschke. Clinical and molecular genetics of psychotic depression. , 2013, Schizophrenia bulletin.
[63] Fikret Erdogan,et al. Comparative genome hybridization suggests a role for NRXN1 and APBA2 in schizophrenia. , 2007, Human molecular genetics.
[64] Tony J. Simon,et al. 22q11.2 microdeletions: linking DNA structural variation to brain dysfunction and schizophrenia , 2010, Nature Reviews Neuroscience.
[65] Yiping Shen,et al. Deletions of NRXN1 (Neurexin-1) Predispose to a Wide Spectrum of Developmental Disorders , 2010, American journal of medical genetics. Part B, Neuropsychiatric genetics : the official publication of the International Society of Psychiatric Genetics.
[66] L. Goldstein. New frontiers in human cell biology and medicine: Can pluripotent stem cells deliver? , 2012, The Journal of cell biology.
[67] S. Frangou,et al. Autism Spectrum Disorders and Schizophrenia: Meta-Analysis of the Neural Correlates of Social Cognition , 2011, PloS one.
[68] M. He,et al. The BLOC interactomes form a network in endosomal transport. , 2007, Journal of genetics and genomics = Yi chuan xue bao.
[69] E. C. Dell'Angelica,et al. Dysbindin-containing complexes and their proposed functions in brain: from zero to (too) many in a decade , 2011, ASN neuro.
[70] Roger Guimerà,et al. Missing and spurious interactions and the reconstruction of complex networks , 2009, Proceedings of the National Academy of Sciences.
[71] Y. Smith,et al. Roles of BLOC-1 and adaptor protein-3 complexes in cargo sorting to synaptic vesicles. , 2009, Molecular biology of the cell.
[72] A. Percy,et al. Experimental models of Rett syndrome based on Mecp2 dysfunction , 2011, Experimental biology and medicine.
[73] Jaques Reifman,et al. Inferring high-confidence human protein-protein interactions , 2012, BMC Bioinformatics.
[74] M. Burmeister,et al. Neuronal and non-neuronal functions of the AP-3 sorting machinery , 2007, Journal of Cell Science.
[75] P. Stankiewicz,et al. Phenotypic spectrum and genotype–phenotype correlations of NRXN1 exon deletions , 2012, European Journal of Human Genetics.
[76] David W. Evans,et al. Developmental brain dysfunction: revival and expansion of old concepts based on new genetic evidence , 2013, The Lancet Neurology.
[77] J. Hsuan,et al. Phosphatidylinositol 4-kinase type II-alpha , 2008 .
[78] V. Faundez,et al. The WASH complex, an endosomal Arp2/3 activator, interacts with the Hermansky–Pudlak syndrome complex BLOC-1 and its cargo phosphatidylinositol-4-kinase type II α , 2013 .
[79] B. Wainer,et al. BLOC-1 complex deficiency alters the targeting of adaptor protein complex-3 cargoes. , 2006, Molecular biology of the cell.
[80] H. C. Hartzell,et al. A comprehensive strategy to identify stoichiometric membrane protein interactomes , 2012, Cellular logistics.
[81] Daniel L. Koller,et al. Convergent functional genomics of schizophrenia: from comprehensive understanding to genetic risk prediction , 2012, Molecular Psychiatry.
[82] E. Kavalali,et al. The role of non-canonical SNAREs in synaptic vesicle recycling , 2012, Cellular logistics.
[83] V. Faundez,et al. Cell Biology of the BLOC-1 Complex Subunit Dysbindin, a Schizophrenia Susceptibility Gene , 2011, Molecular Neurobiology.
[84] D. Sheppard,et al. Cross talk among TGF-β signaling pathways, integrins, and the extracellular matrix. , 2011, Cold Spring Harbor perspectives in biology.
[85] V. Wong,et al. Spectrum of mutations in the MECP2 gene in patients with infantile autism and Rett syndrome , 2000, Journal of medical genetics.
[86] J. Waddington,et al. Epidemiological and clinical characterization following a first psychotic episode in major depressive disorder: comparisons with schizophrenia and bipolar I disorder in the Cavan-Monaghan First Episode Psychosis Study (CAMFEPS). , 2013, Schizophrenia bulletin.