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首页> 外文期刊>NeuroImage >Expression mapping of tetracycline-responsive prion protein promoter: digital atlasing for generating cell-specific disease models.
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Expression mapping of tetracycline-responsive prion protein promoter: digital atlasing for generating cell-specific disease models.

机译:四环素反应性病毒蛋白启动子的表达图谱:用于生成细胞特异性疾病模型的数字地图集。

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We present a digital atlas system that allows mapping of molecular expression patterns at cellular resolution through large series of histological sections. Using this system, we have mapped the distribution of a distinct marker, encoded by the LacZ reporter gene driven by the tetracycline-responsive prion protein promoter in double transgenic mice. The purpose is to evaluate the suitability of this promoter mouse line for targeting genes of interest to specific brain regions, essential for construction of inducible transgenic disease models. Following processing to visualize the promoter expression, sections were counterstained to simultaneously display cytoarchitectonics. High-resolution mosaic images covering entire coronal sections were collected through the mouse brain at intervals of 200 microm. A web-based application provides access to a customized virtual microscopy tool for viewing and navigation within and across the section images. For each section image, the nearest section in a standard atlas is defined, and annotations of key structures and regions inserted. Putative categorization of labeled cells was performed with use of distribution patterns, followed by cell size and shape, as parameters that were compared to legacy data. Among the ensuing results were expression of this promoter in putative glial cells in the cerebellum (and not in Purkinje cells), in putative glial cells in the substantia nigra, in pallidal glial cells or interneurons, and in distinct cell layers and regions of the hippocampus. The study serves as a precursor for a database resource allowing evaluation of the suitability of different promoter mouse lines for generating disease models.
机译:我们提出了一种数字图谱系统,该系统可以通过大量组织学切片以细胞分辨率映射分子表达模式。使用该系统,我们在双转基因小鼠中绘制了由LacZ报告基因编码的独特标记的分布,该LacZ报告基因由四环素反应性pr病毒蛋白启动子驱动。目的是评估该启动子小鼠品系是否适合将感兴趣的基因靶向特定的大脑区域,这对于构建诱导型转基因疾病模型至关重要。在加工以可视化启动子表达后,将切片复染色以同时展示细胞结构学。通过小鼠大脑以200微米的间隔收集覆盖整个冠状切片的高分辨率马赛克图像。基于Web的应用程序提供对定制的虚拟显微镜工具的访问,以在截面图像内和截面图像之间进行查看和导航。对于每个剖面图像,都定义了标准图集中最接近的剖面,并插入了关键结构和区域的注释。使用分布模式进行推定的标记细胞分类,然后将细胞大小和形状作为参数与传统数据进行比较。在随后的结果中,该启动子在小脑的假定神经胶质细胞(而不是浦肯野细胞中),黑质的假定神经胶质细胞,苍白的神经胶质细胞或中间神经元以及海马的不同细胞层和区域中表达。 。该研究作为数据库资源的前身,可以评估不同启动子小鼠品系用于生成疾病模型的适用性。

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