A global view of protein expression in human cells, tissues, and organs
Open Access
- 1 January 2009
- journal article
- research article
- Published by Springer Nature in Molecular Systems Biology
- Vol. 5 (1) , 337
- https://doi.org/10.1038/msb.2009.93
Abstract
Defining the protein profiles of tissues and organs is critical to understanding the unique characteristics of the various cell types in the human body. In this study, we report on an anatomically comprehensive analysis of 4842 protein profiles in 48 human tissues and 45 human cell lines. A detailed analysis of over 2 million manually annotated, high‐resolution, immunohistochemistry‐based images showed a high fraction (>65%) of expressed proteins in most cells and tissues, with very few proteins (<2%) detected in any single cell type. Similarly, confocal microscopy in three human cell lines detected expression of more than 70% of the analyzed proteins. Despite this ubiquitous expression, hierarchical clustering analysis, based on global protein expression patterns, shows that the analyzed cells can be still subdivided into groups according to the current concepts of histology and cellular differentiation. This study suggests that tissue specificity is achieved by precise regulation of protein levels in space and time, and that different tissues in the body acquire their unique characteristics by controlling not which proteins are expressed but how much of each is produced. Mol Syst Biol. 5: 337Keywords
This publication has 33 references indexed in Scilit:
- MaxQuant enables high peptide identification rates, individualized p.p.b.-range mass accuracies and proteome-wide protein quantificationNature Biotechnology, 2008
- Alternative isoform regulation in human tissue transcriptomesNature, 2008
- Precision proteomics: The case for high resolution and high mass accuracyProceedings of the National Academy of Sciences, 2008
- A Global View of Gene Activity and Alternative Splicing by Deep Sequencing of the Human TranscriptomeScience, 2008
- Distinguishing protein-coding and noncoding genes in the human genomeProceedings of the National Academy of Sciences, 2007
- Identification and analysis of functional elements in 1% of the human genome by the ENCODE pilot projectNature, 2007
- Genome-wide profiles of STAT1 DNA association using chromatin immunoprecipitation and massively parallel sequencingNature Methods, 2007
- The implications of alternative splicing in the ENCODE protein complementProceedings of the National Academy of Sciences, 2007
- Cytoscape: A Software Environment for Integrated Models of Biomolecular Interaction NetworksGenome Research, 2003
- Tissue microarrays for high-throughput molecular profiling of tumor specimensNature Medicine, 1998