Generation of Neuron and Glia Specific Cre Mice
Generation of Neuron and Glia Specific Cre Mice
批准号:
7673566
负责人:
Bernd Gloss
金额:
$21.06万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2008
资助国家:
美国
项目状态:
已结题
起止时间:
2008-09-01 至 2011-08-31
关键词:
AblationAllelesAnimal ModelBacterial Artificial ChromosomesBrainBrain DiseasesBreedingCellsCodeCommunitiesComplementComplexDataDevelopmentDisadvantagedDiseaseDopamine-beta-monooxygenaseEngineeringEpilepsyEssential GenesEstrogen ReceptorsExcisionGene TargetingGenerationsGenesGeneticGenomeHealthHumanIndividualLabelLigand Binding DomainLinkMedicalMental disordersModificationMouse StrainsMusMutateMutationNervous system structureNeurogliaNeurologicNeuronsNeurosciencesNeurotransmittersNucleic Acid Regulatory SequencesParkinson DiseasePharmacologic SubstancePhenotypePlayPopulationProductionPublicationsReporterRoleScienceSeriesSiteSpecificityTamoxifenTarget PopulationsTimeTransgenesTransgenic AnimalsTransgenic MiceTransgenic OrganismsTryptophan 5-monooxygenaseUntranslated RegionsViral Fusion ProteinsWorkbasecell typedopamine transporterdopaminergic neuronfunctional genomicsgenome sequencinghuman diseaseinsightmature animalmutantneuronal circuitrynovel therapeutic interventionpublic health relevancerecombinasetool
中文摘要
描述(由申请人提供):哺乳动物大脑中神经元的巨大多样性及其分散的排列需要基因靶向来研究在各种神经和精神疾病中已被认可的个体亚群。例如,帕金森病中多巴胺能神经元的选择性变性或脑发育和癫痫中gaba能神经元的参与。因此,突变特定神经元群或直接或通过神经胶质修饰控制其活动的能力,将成为阐明这些神经元以及这些神经元内单个分子对健康和疾病中不同大脑功能的贡献的有力工具。为了帮助个体亚群的研究,我们计划产生含有细菌人工染色体(BAC)驱动基因的转基因小鼠,这些基因表达他莫昔芬诱导的Cre重组酶(CreERT2),这是一种病毒Cre重组酶和人类突变雌激素受体配体结合域的融合蛋白,由Chambon, Metzger和同事开发。胶质细胞将被Gfap和S100b驱动程序靶向。对于gaba能神经元,我们将使用GAD65 (Gad2)和VGAT (Slc32a1)作为驱动。胺能神经元将以多巴胺转运蛋白(Slc6a3)、多巴胺-羟化酶(Dbh)和色氨酸羟化酶2 (Tph2)基因为驱动因子。CreERT2的诱导性将允许在成熟动物中进行缺失,并避免在发育过程中因缺失封闭基因而引起的并发症。随着基因组科学的重点从测序基因组转向功能基因组学,已经产生了许多带有loxP位点和loxP停止拯救转基因的基因的小鼠。提出的CreERT2驱动系将提供一种宝贵的工具,用于从基因上解剖神经系统中固定基因的功能,从而促进疾病相关基因的识别。公共卫生相关性。我们的建议的医学相关性得到了越来越多的疾病相关基因的发现的支持,特别是在大脑中,可以在密切相关的动物模型中进行研究。我们可以提供转基因动物模型来概括人类大脑疾病,从而促进他们的实验获得新的治疗方法,这将有利于制药和医学界。
英文摘要
DESCRIPTION (provided by applicant): The enormous diversity of neurons in the mammalian brain and their interspersed arrangement require genetic targeting to study individual subpopulations that have been recognized in various neurological and psychiatric diseases. For example, the selective degeneration of dopaminergic neurons in Parkinson's disease or the involvement of GABAergic neurons in brain development and epilepsies. Therefore, the ability to mutate specific neuronal groups or control their activity directly or via glial modifications, will be a powerful tool for elucidating the contribution of such neurons-and the contribution of individual molecules within these neurons-to diverse brain functions in health and disease. To aid the study of individual subpopulations we plan to generate transgenic mice harboring bacterial artificial chromosome (BAC) based driver-transgenes that express tamoxifen inducible Cre recombinase (CreERT2), which is a fusion protein of the viral Cre recombinase and a human mutated estrogen receptor ligand binding domain developed by Chambon, Metzger and colleagues. Glia cells will be targeted by Gfap and S100b drivers. For GABAergic neurons we will use GAD65 (Gad2) and VGAT (Slc32a1) as drivers. Aminergic neurons will be targeted with the genes for dopamine transporter (Slc6a3), dopamine beta-hydroxylase (Dbh) and tryptophan hydroxylase 2 (Tph2) as drivers. The inducibility of CreERT2 will allow deletion in mature animals and avoid complications that arise from deletion of floxed genes during development. With the focus of genome science shifting from sequencing genomes to functional genomics, numerous mice with genes flanked by loxP sites and loxP stopped rescue transgenes have been generated. The proposed CreERT2 driver lines would provide an invaluable tool to genetically dissect the functions of floxed genes in the nervous system, thus facilitating the identification of disease-linked genes. PUBLIC HEALTH RELEVANCE. The medical relevance of our proposal is supported by the discovery of an increasing number of disease linked genes, especially in the brain, that can be studied in a closely related animal model. We could provide the transgenic animal models to recapitulate human brain disorders, and thereby facilitate their experimental access to new therapeutic approaches, that would benefit both the pharmaceutical and medical communities.
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会议论文
Generation of Neuron and Glia Specific Cre Mice
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批准号:7469695
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项目类别:
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资助金额:$17.55万
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财政年份:2008
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负责人:Bernd Gloss
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依托单位:
海外基金