Science for Life Laboratory, School of Biotechnology, KTH Royal Institute of Technology, SE-171 21 Stockholm, Sweden.
Cambridge Centre for Proteomics, Department of Biochemistry, University of Cambridge, Tennis Court Road, Cambridge CB2 1QR, UK.
Science. 2017 May 26;356(6340). doi: 10.1126/science.aal3321. Epub 2017 May 11.
Resolving the spatial distribution of the human proteome at a subcellular level can greatly increase our understanding of human biology and disease. Here we present a comprehensive image-based map of subcellular protein distribution, the Cell Atlas, built by integrating transcriptomics and antibody-based immunofluorescence microscopy with validation by mass spectrometry. Mapping the in situ localization of 12,003 human proteins at a single-cell level to 30 subcellular structures enabled the definition of the proteomes of 13 major organelles. Exploration of the proteomes revealed single-cell variations in abundance or spatial distribution and localization of about half of the proteins to multiple compartments. This subcellular map can be used to refine existing protein-protein interaction networks and provides an important resource to deconvolute the highly complex architecture of the human cell.
解析人类蛋白质组在亚细胞水平的空间分布,可以极大地增进我们对人类生物学和疾病的理解。在这里,我们通过整合转录组学和基于抗体的免疫荧光显微镜技术,并通过质谱验证,呈现了一个综合的基于图像的亚细胞蛋白质分布图谱,即细胞图谱。将 12003 个人类蛋白质在单细胞水平的原位定位映射到 30 种亚细胞结构,从而定义了 13 种主要细胞器的蛋白质组。对蛋白质组的探索揭示了约一半蛋白质在丰度或空间分布上的单细胞变化,以及它们在多个隔室中的定位。这个亚细胞图谱可以用来完善现有的蛋白质-蛋白质相互作用网络,并为解析人类细胞高度复杂的结构提供了一个重要的资源。