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1.
Hum Mol Genet ; 19(14): 2780-91, 2010 Jul 15.
Artigo em Inglês | MEDLINE | ID: mdl-20442137

RESUMO

Down syndrome (DS) is caused by the presence of an extra copy of human chromosome 21 (Hsa21) and is the most common genetic cause for developmental cognitive disability. The regions on Hsa21 are syntenically conserved with three regions located on mouse chromosome 10 (Mmu10), Mmu16 and Mmu17. In this report, we describe a new mouse model for DS that carries duplications spanning the entire Hsa21 syntenic regions on all three mouse chromosomes. This mouse mutant exhibits DS-related neurological defects, including impaired cognitive behaviors, reduced hippocampal long-term potentiation and hydrocephalus. These results suggest that when all the mouse orthologs of the Hsa21 genes are triplicated, an abnormal cognitively relevant phenotype is the final outcome of the elevated expressions of these orthologs as well as all the possible functional interactions among themselves and/or with other mouse genes. Because of its desirable genotype and phenotype, this mutant may have the potential to serve as one of the reference models for further understanding the developmental cognitive disability associated with DS and may also be used for developing novel therapeutic interventions for this clinical manifestation of the disorder.


Assuntos
Cromossomos Humanos Par 21/genética , Modelos Animais de Doenças , Síndrome de Down/genética , Síndrome de Down/patologia , Camundongos Transgênicos , Animais , Células Cultivadas , Síndrome de Down/fisiopatologia , Feminino , Força da Mão/fisiologia , Hipocampo/fisiopatologia , Humanos , Masculino , Aprendizagem em Labirinto/fisiologia , Camundongos , Camundongos Endogâmicos C57BL , Modelos Biológicos , Condicionamento Físico Animal , Gravidez , Sintenia/genética
2.
Mamm Genome ; 21(5-6): 258-67, 2010 Jun.
Artigo em Inglês | MEDLINE | ID: mdl-20512340

RESUMO

Copy-number variation in the human genome can be disease-causing or phenotypically neutral. This type of genetic rearrangement associated with human chromosome 21 (Hsa21) underlies partial Monosomy 21 and Trisomy 21. Mental retardation is a major clinical manifestation of partial Monosomy 21. To model this human chromosomal deletion disorder, we have generated novel mouse mutants carrying heterozygous deletions of the 2.3- and 1.1-Mb segments on mouse chromosome 10 (Mmu10) and Mmu17, respectively, which are orthologous to the regions on human 21q22.3, using Cre/loxP-mediated chromosome engineering. Alterations of the transcriptional levels of genes within the deleted intervals reflect gene-dosage effects in the mutant mice. The analysis of cognitive behaviors shows that the mutant mice carrying the deletion on either Mmu10 or Mmu17 are impaired in learning and memory. Therefore, these mutants represent mouse models for Monosomy 21-associated mental retardation, which can serve as a powerful tool to study the molecular mechanism underlying the clinical phenotype and should facilitate efforts to identify the haploinsufficient causative genes.


Assuntos
Cromossomos Humanos Par 21/genética , Transtornos Cognitivos/genética , Cognição , Animais , Deleção Cromossômica , Modelos Animais de Doenças , Síndrome de Down , Dosagem de Genes , Humanos , Aprendizagem , Memória , Camundongos , Fenótipo , Sintenia
3.
Mol Cell Biol ; 23(19): 6798-808, 2003 Oct.
Artigo em Inglês | MEDLINE | ID: mdl-12972600

RESUMO

Csn3 (Cops3) maps to the mouse chromosome 11 region syntenic to the common deletion interval for the Smith-Magenis syndrome, a contiguous gene deletion syndrome. It encodes the third subunit of an eight-subunit protein complex, the COP9 signalosome (CSN), which controls a wide variety of molecules of different functions. Mutants of this complex caused lethality at early development of both plants and Drosophila melanogaster. CSN function in vivo in mammals is unknown. We disrupted the murine Csn3 gene in three independent ways with insertional vectors, including constructing a approximately 3-Mb inversion chromosome. The heterozygous mice appeared normal, although the protein level was reduced. Csn3(-/-) embryos arrested after 5.5 days postcoitum (dpc) and resorbed by 8.5 dpc. Mutant embryos form an abnormal egg cylinder which does not gastrulate. They have reduced numbers of epiblast cells, mainly due to increased cell death. In the Csn3(-/-) mice, subunit 8 of the COP9 complex was not detected by immunohistochemical techniques, suggesting that the absence of Csn3 may disrupt the entire COP9 complex. Therefore, Csn3 is important for maintaining the integrity of the COP9 signalosome and is crucial to maintain the survival of epiblast cells and thus the development of the postimplantation embryo in mice.


Assuntos
Divisão Celular/fisiologia , Proteínas Quinases/metabolismo , Proteínas/metabolismo , Transdução de Sinais , Animais , Apoptose , Blastocisto/fisiologia , Complexo do Signalossomo COP9 , Quimera , Inversão Cromossômica , Feminino , Deleção de Genes , Regulação da Expressão Gênica no Desenvolvimento , Heterozigoto , Masculino , Camundongos , Camundongos Endogâmicos C57BL , Camundongos Knockout , Complexos Multiproteicos , Proteínas Nucleares , Peptídeo Hidrolases , Proteínas Quinases/genética , Estrutura Terciária de Proteína , Proteínas/química , Proteínas/genética , Proteínas Proto-Oncogênicas , Células-Tronco/metabolismo , Testículo/metabolismo
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