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Post-transcriptional regulation across human tissues

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2017

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Public Library of Science
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Franks, Alexander, Edoardo Airoldi, and Nikolai Slavov. 2017. “Post-transcriptional regulation across human tissues.” PLoS Computational Biology 13 (5): e1005535. doi:10.1371/journal.pcbi.1005535. http://dx.doi.org/10.1371/journal.pcbi.1005535.

Abstract

Transcriptional and post-transcriptional regulation shape tissue-type-specific proteomes, but their relative contributions remain contested. Estimates of the factors determining protein levels in human tissues do not distinguish between (i) the factors determining the variability between the abundances of different proteins, i.e., mean-level-variability and, (ii) the factors determining the physiological variability of the same protein across different tissue types, i.e., across-tissues variability. We sought to estimate the contribution of transcript levels to these two orthogonal sources of variability, and found that scaled mRNA levels can account for most of the mean-level-variability but not necessarily for across-tissues variability. The reliable quantification of the latter estimate is limited by substantial measurement noise. However, protein-to-mRNA ratios exhibit substantial across-tissues variability that is functionally concerted and reproducible across different datasets, suggesting extensive post-transcriptional regulation. These results caution against estimating protein fold-changes from mRNA fold-changes between different cell-types, and highlight the contribution of post-transcriptional regulation to shaping tissue-type-specific proteomes.

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Biology and Life Sciences, Genetics, Gene Expression, Gene Regulation, Post-Transcriptional Gene Regulation, Biology and life sciences, Biochemistry, Nucleic acids, RNA, Messenger RNA, Proteins, Tissue Proteins, Anatomy, Renal System, Kidneys, Medicine and Health Sciences, Proteomes, Computational Biology, Genome Analysis, Gene Ontologies, Genomics

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