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Resolving In Vivo Gene Expression During Collective Cell Migration using an Integrated RNAscope Immunohistochemistry and Tissue Clearing Method

机译:解决使用集成的RNAscope免疫组织化学和组织清除方法在集体细胞迁移过程中体内基因表达。

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摘要

During collective cell migration individual cells display diverse behaviors that complicate our understanding of group cell decisions of direction and cohesion. In vivo gene and protein expression analyses would shed light on the underlying molecular choreography. However, this information has been limited due to difficulties to integrate single cell detection methods and the simultaneous readout of signals deep within the embryo. Here, we optimize and integrate multiplex fluorescence in situ hybridization by RNAscope, immunohistochemistry, and tissue clearing to visualize transcript and protein localization within single cells deep within intact chick embryos. Using standard confocal microscopy, we visualize the mRNA expression of up to 3 genes simultaneously within protein labeled HNK1-positive migrating cranial neural crest cells within 2 day old cleared chick embryos. Gene expression differences measured between adjacent cells or within subregions are quantified using spot counting and polyline kymograph methods, respectively. This optimization and integration of methods provide an improved 3D in vivo molecular interrogation of collective cell migration and foundation to broaden into a wider range of embryo and adult model systems.
机译:在集体细胞迁移过程中,单个细胞表现出多种行为,这使我们对方向和内聚力的群体细胞决定的理解更加复杂。体内基因和蛋白质表达分析将阐明潜在的分子编排。但是,由于难以整合单细胞检测方法以及难以同时读取胚胎深处的信号,因此该信息受到了限制。在这里,我们通过RNAscope,免疫组化和组织清除来优化和整合多重荧光原位杂交,以可视化完整鸡胚深处单个细胞中的转录本和蛋白质定位。使用标准的共聚焦显微镜,我们可以在2天大的雏鸡胚胎内的蛋白质标记的HNK1阳性迁移性颅神经rest细胞内同时可视化多达3个基因的mRNA表达。分别使用斑点计数和折线运动图谱法对相邻细胞之间或子区域内测得的基因表达差异进行定量。方法的这种优化和集成为集体细胞迁移和基础的改进的3D体内分子询问提供了基础,以扩展到更广泛的胚胎和成年模型系统。

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