Department of Medical Biochemistry and Biophysics, Karolinska Institutet, Stockholm, Sweden.
Department of Cell and Molecular Biology, Karolinska Institutet, Stockholm, Sweden.
Nat Nanotechnol. 2021 Jan;16(1):85-95. doi: 10.1038/s41565-020-00785-0. Epub 2020 Nov 2.
Most proteins at the plasma membrane are not uniformly distributed but localize to dynamic domains of nanoscale dimensions. To investigate their functional relevance, there is a need for methods that enable comprehensive analysis of the compositions and spatial organizations of membrane protein nanodomains in cell populations. Here we describe the development of a non-microscopy-based method for ensemble analysis of membrane protein nanodomains. The method, termed nanoscale deciphering of membrane protein nanodomains (NanoDeep), is based on the use of DNA nanoassemblies to translate membrane protein organization information into a DNA sequencing readout. Using NanoDeep, we characterized the nanoenvironments of Her2, a membrane receptor of critical relevance in cancer. Importantly, we were able to modulate by design the inventory of proteins analysed by NanoDeep. NanoDeep has the potential to provide new insights into the roles of the composition and spatial organization of protein nanoenvironments in the regulation of membrane protein function.
大多数质膜蛋白并非均匀分布,而是定位于具有纳米级维度的动态区域。为了研究其功能相关性,我们需要开发能够全面分析细胞群体中膜蛋白纳米域组成和空间组织的方法。在这里,我们描述了一种基于非显微镜的方法,用于对膜蛋白纳米域进行整体分析。该方法称为膜蛋白纳米域的纳米尺度解析(NanoDeep),它基于使用 DNA 纳米组装将膜蛋白组织信息转化为 DNA 测序读数。使用 NanoDeep,我们对 Her2(一种在癌症中具有关键相关性的膜受体)的纳米环境进行了表征。重要的是,我们能够通过设计来调节 NanoDeep 分析的蛋白质种类。NanoDeep 有可能为理解蛋白质纳米环境的组成和空间组织在调节膜蛋白功能中的作用提供新的见解。