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Genetic access to cortical cell types with epigenetic assays and high-throughput, low-cost enhancer screening

Genetic access to cortical cell types with epigenetic assays and high-throughput, low-cost enhancer screening
通过表观遗传分析和高通量、低成本增强子筛选对皮质细胞类型进行遗传获取
批准号:
10237360
负责人:
EDWARD M CALLAWAY
金额:
$73.19万
依托单位国家:
美国
项目类别:
财政年份:
2020
资助国家:
美国
项目状态:
已结题
起止时间:
2020-09-01 至 2023-06-30

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Project Summary The function of the nervous system is dependent on complex interactions between networks of neurons composed of multiple neuron types. Understanding how these networks function both in health and disease is dependent on understanding the precise connectivity between specific neuron types and their functional interactions in the intact brain. It is therefore apparent that, in order to have an adequate understanding of the nervous system, it is necessary to have detailed descriptions of neuronal connectivity with the same level of precision at which these systems operate and to selectively manipulate and measure the activity of specific cell types in the context of the normal functioning network. Such studies would be greatly facilitated by the ability to target gene expression to specific cell types in the context of AAV vectors. The research proposed here is aimed at developing and using a novel high throughput strategy and PCR-activated cell sorting for identification of cell type specific enhancer elements. The approach used will identify enhancers that can drive transgene expression in specific types of cortical neurons. Further studies will valdiate these enhancers in a real-use context for ability to facilitate imaging with genetically-encoded calcium indicators and to facilitate optogenetic inactivation. These reagents will allow future studies testing the functional contributions of specific inhibitory neuron types to perception,cognition and behavior.
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Genetic access to cortical cell types with epigenetic assays and high-throughput, low-cost enhancer screening
Genetic access to cortical cell types with epigenetic assays and high-throughput, low-cost enhancer screening
Anatomical and Functional Interrogation of Parallel Visual Pathways from Eye to Brain
Center for Epigenomics of the Mouse Brain Atlas (CEMBA)
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