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Resin embedded multicycle imaging (REMI): a tool to evaluate protein domains

机译:树脂嵌入式多周期成像(REMI):一种评估蛋白质结构域的工具

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摘要

Protein complexes associated with cellular processes comprise a significant fraction of all biology, but our understanding of their heterogeneous organization remains inadequate, particularly for physiological densities of multiple protein species. Towards resolving this limitation, we here present a new technique based on resin-embedded multicycle imaging (REMI) of proteins in-situ. By stabilizing protein structure and antigenicity in acrylic resins, affinity labels were repeatedly applied, imaged, removed, and replaced. In principle, an arbitrarily large number of proteins of interest may be imaged on the same specimen with subsequent digital overlay. A series of novel preparative methods were developed to address the problem of imaging multiple protein species in areas of the plasma membrane or volumes of cytoplasm of individual cells. For multiplexed examination of antibody staining we used straightforward computational techniques to align sequential images, and super-resolution microscopy was used to further define membrane protein colocalization. We give one example of a fibroblast membrane with eight multiplexed proteins. A simple statistical analysis of this limited membrane proteomic dataset is sufficient to demonstrate the analytical power contributed by additional imaged proteins when studying membrane protein domains.
机译:与细胞过程相关的蛋白质复合物占所有生物学的很大一部分,但是我们对其异质组织的了解仍然不足,尤其是对于多种蛋白质物种的生理密度而言。为了解决这一局限性,我们在此提出了一种基于蛋白质原位嵌入树脂的多周期成像(REMI)的新技术。通过稳定丙烯酸树脂中的蛋白质结构和抗原性,亲和标记被重复应用,成像,去除和替换。原则上,任意数量的目标蛋白质可以通过随后的数字叠加成像在同一样本上。开发了一系列新颖的制备方法,以解决在质膜区域或单个细胞的细胞质体积中对多种蛋白质种类成像的问题。对于抗体染色的多重检查,我们使用了简单的计算技术来对齐顺序图像,并使用超分辨率显微镜进一步定义了膜蛋白共定位。我们给出了一个带有八个多重蛋白的成纤维细胞膜的例子。对这种有限的膜蛋白质组学数据集进行简单的统计分析足以证明研究膜蛋白结构域时其他成像蛋白所贡献的分析能力。

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