Transcription is an episodic process characterized by probabilistic bursts, but how the transcriptional noise from these bursts is modulated by cellular physiology remains unclear. Using simulations and single-molecule RNA counting, we examined how cellular processes influence cell-to-cell variability (noise). The results show that RNA noise is higher in the cytoplasm than the nucleus in â¼85% of genes across diverse promoters, genomic loci, and cell types (human and mouse). Measurements show further amplification of RNA noise in the cytoplasm, fitting a model of biphasic mRNA conversion between translation- and degradation-competent states. This multi-state translation-degradation of mRNA also causes substantial noise amplification in protein levels, ultimately accounting for â¼74% of intrinsic protein variability in cell populations. Overall, the results demonstrate how noise from transcriptional bursts is intrinsically amplified by mRNA processing, leading to a large super-Poissonian variability in protein levels.
Cytoplasmic Amplification of Transcriptional Noise Generates Substantial Cell-to-Cell Variability.
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作者:Hansen Maike M K, Desai Ravi V, Simpson Michael L, Weinberger Leor S
| 期刊: | Cell Systems | 影响因子: | 7.700 |
| 时间: | 2018 | 起止号: | 2018 Oct 24; 7(4):384-397 |
| doi: | 10.1016/j.cels.2018.08.002 | ||
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