[1] |
Kim N.Regulation of MicroRNA Biogenesis [J].Nat Rev Mol Cell Biol, 2014, 15(8):605-610.
|
[2] |
Janas MM, Wang B, Harris AS, et al.Alternative RISC assembly: binding and repression of microRNA-mRNA duplexes by human Ago proteins [J].RNA,2012,18(11):2041-2055.
|
[3] |
Vaishnavi V, Manikandan M, Munirajan AK.Mining the 3′UTR of Autism-implicated Genes for SNPs Perturbing MicroRNA Regulation[J]. Genomics Proteomics Bioinformatics, 2014,12(2):92-104.
|
[4] |
Xu B, Karayiorgou M, Gogos JA. MicroRNAs in psychiatric and neurodevelopmental disorders [J].Brain Res,2010,1338(2):78-88.
|
[5] |
Benetti S, Mechelli A, Picchioni M, et al. Functional integration between the posterior hippocampus and prefrontal cortex is impaired in both first episode schizophrenia and the at risk mental state [J]. Brain, 2009,132(9):2426-2436.
|
[6] |
Stark KL, Xu B, Bagchi A, et al. Altered brain microRNA biogenesis contributes to phenotypic deficits in a 22q11-deletion mouse model [J]. Nat Genet, 2008,40(6):751-760.
|
[7] |
Fung WL, Mcevilly R, Fong J, et al.Elevated prevalence of generalized anxiety disorder in adults with 22q11.2 deletion syndrome [J]. Am J Psychiatry,2010,167(8):998.
|
[8] |
Stefansson H, Rujescu D, Cichon S, et al.Large recurrent microdeletions associated with schizophrenia [J]. Nature, 2008,455(7210):232-236.
|
[9] |
Sporn A, Addington A, Reiss AL, et al.22q11 deletion syndrome in childhood onset schizophrenia: an update [J]. Mol Psychiatry,2003,9(3):225-226.
|
[10] |
Green T, Gothelf D, Glaser B, et al.Psychiatric Disorders and Intellectual Functioning Throughout Development in Velocardiofacial (22q11.2 Deletion) Syndrome [J].J Am Acad Child Adolesc Psychiatry,2009,48(11):1060-1068.
|
[11] |
Shaikh TH, Kurahashi H, Saitta SC, et al.Chromosome 22-specific low copy repeats and the 22q11.2 deletion syndrome: genomic organization and deletion endpoint analysis [J].Hum Mol Genet,2000,9(4):489-501.
|
[12] |
Karayiorgou M, Simon TJ, Gogos JA.22q11.2 microdeletions: linking DNA structural variation to brain dysfunction and schizophrenia [J].Nat Rev Neurosci,2010,11(6):402-416.
|
[13] |
Mukai J.Palmitoylation-dependent neurodevelopmental deficits in a mouse model of 22q11 microdeletion [J].Nat Neurosci,2008,11(11):1302-1310.
|
[14] |
Merico D, Costain G, Butcher NJ, et al.MicroRNA Dysregulation, Gene Networks, and Risk for Schizophrenia in 22q11.2 Deletion Syndrome [J].Front Neurol,2014,5(24):238.
|
[15] |
Quick-Cleveland J, Jacob J, Weitz S, et al.The DGCR8 RNA-Binding Heme Domain Recognizes Primary MicroRNAs by Clamping the Hairpin [J].Cell Rep,2014,7(6):1994-2005.
|
[16] |
Wang Y, Medvid R, Melton C, et al.DGCR8 is essential for microRNA biogenesis and silencing of embryonic stem cell self-renewal [J].Nat Genet,2007,39(3):380-385.
|
[17] |
Schofield C, Hsu M,et al.Monoallelic deletion of the microRNA biogenesis gene Dgcr8 produces deficits in the development of excitatory synaptic transmission in the prefrontal cortex[J].Neural Dev,2011,6(1):1-10.
|
[18] |
Ursu S, Kring AM, Gard MG, et al. Prefrontal cortical deficits and impaired cognition-emotion interactions in schizophrenia[J]. Am J Psychiatry, 2011, 168(3):276-285.
|
[19] |
Fénelon K, Mukai J, Xu B, et al. Deficiency of Dgcr8, a gene disrupted by the 22q11.2 microdeletion, results in altered short-term plasticity in the prefrontal cortex[J]. Proc Natl Acad of Sci USA, 2011, 108(11):4447-4452.
|
[20] |
Hsu Ruby, Schofield Claude M, Cruz Cassandra G Dela, et al. Dgcr8 is required in pyramidal neurons for normal inhibitory synaptic function[J]. Mol Cel Neurosci, 2012, 50(3-4):283-292.
|
[21] |
Fénelon K, Xu B, Lai CS, et al. The pattern of cortical dysfunction in a mouse model of a schizophrenia-related microdeletion[J]. J Neurosci, 2013, 33(37):14825-14839.
|
[22] |
Toritsuka M, Kimoto S, Muraki K, et al. Deficits in microRNA-mediated Cxcr4/Cxcl12 signaling in neurodevelopmental deficits in a 22q11 deletion syndrome mouse model[J]. Proc Natl Acad Sci USA, 2013, 110(43):17552-17557.
|
[23] |
Ouchi Y, Banno Y, Shimizu Y, et al. Reduced adult hippocampal neurogenesis and working memory deficits in the Dgcr8-deficient mouse model of 22q11.2 deletion-associated schizophrenia can be rescued by IGF2[J]. J Neurosci, 2013, 33(22):9408-9419.
|
[24] |
Karayiorgou M, Simon TJ, Gogos JA. 22q11.2 microdeletions: linking DNA structural variation to brain dysfunction and schizophrenia[J]. Nat Rev Neurosci, 2010, 11(6):402-416.
|
[25] |
Xu B, Hsu PK, Stark KL, et al. Derepression of a Neuronal Inhibitor due to miRNA Dysregulation in a Schizophrenia-Related Microdeletion[J]. Cell, 2013, 152(1-2):262-275.
|
[26] |
Earls LR, Fricke RG, Yu J, et al. Age-dependent microRNA control of synaptic plasticity in 22q11 deletion syndrome and schizophrenia.[J]. J Neurosci, 2012, 32(41):14132-14144.
|
[27] |
Ming L, Nan L, Chen X, et al. miR-185 targets RhoA and Cdc42 expression and inhibits the proliferation potential of human colorectal cells[J]. Cancer Lett, 2011, 301(2):151-160.
|
[28] |
Hill JJ, Hashimoto T, Lewis D A. Molecular mechanisms contributing to dendritic spine alterations in the prefrontal cortex of subjects with schizophrenia[J]. Mol Psychiatry, 2006, 11(6):557-566.
|
[29] |
Ide M, Lewis DA. Altered Cortical CDC42 Signaling Pathways in Schizophrenia: Implications for Dendritic Spine Deficits[J]. Biol Psychiatry, 2010, 68(1):25-32.
|
[30] |
Forstner AJ, Basmanav FB, Mattheisen M, et al. Investigation of the involvement of MIR185 and its target genes in the development of schizophrenia[J]. J Psychiatry Neurosci, 2014, 39(6):386-396.
|