E

Erin K. O’Shea

Howard Hughes Medical Institute

ORCID: 0000-0002-2649-1018

Publishes on Fungal and yeast genetics research, Genomics and Chromatin Dynamics, RNA and protein synthesis mechanisms. 149 papers and 32k citations.

149Publications
32kTotal Citations

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Top publicationsby citations

Noise in Gene Expression: Origins, Consequences, and Control
Cited by 1.8kOpen Access

Genetically identical cells and organisms exhibit remarkable diversity even when they have identical histories of environmental exposure. Noise, or variation, in the process of gene expression may contribute to this phenotypic variability. Recent studies suggest that this noise has multiple sources, including the stochastic or inherently random nature of the biochemical reactions of gene expression. In this review, we summarize noise terminology and comment on recent investigations into the sources, consequences, and control of noise in gene expression.

Control of Stochasticity in Eukaryotic Gene Expression
Cited by 1.5kOpen Access

Noise, or random fluctuations, in gene expression may produce variability in cellular behavior. To measure the noise intrinsic to eukaryotic gene expression, we quantified the differences in expression of two alleles in a diploid cell. We found that such noise is gene-specific and not dependent on the regulatory pathway or absolute rate of expression. We propose a model in which the balance between promoter activation and transcription influences the variability in messenger RNA levels. To confirm the predictions of our model, we identified both cis- and trans-acting mutations that alter the noise of gene expression. These mutations suggest that noise is an evolvable trait that can be optimized to balance fidelity and diversity in eukaryotic gene expression.