Published January 15, 2004 | Version v1
Journal article

Noise minimization in eukaryotic gene expression

Description

All organisms have elaborate mechanisms to control rates of protein production. However, protein production is also subject to stochastic fluctuations, or noise. Several recent studies in Saccharomyces cerevisiae and Escherichia coli have investigated the relationship between transcription and translation rates and stochastic fluctuations in protein levels, or more generally, how such randomness is a function of intrinsic and extrinsic factors. However, the fundamental question of whether stochasticity in protein expression is generally biologically relevant has not been addressed, and it remains unknown whether random noise in the protein production rate of most genes significantly affects the fitness of any organism. We propose that organisms should be particularly sensitive to variation in the protein levels of two classes of genes: genes whose deletion is lethal to the organism and genes that encode subunits of multiprotein complexes. Using an experimentally verified model of stochastic gene expression in S. cerevisiae, we estimate the noise in protein production for nearly every yeast gene, and confirm our prediction that the production of essential and complex-forming proteins involves lower levels of noise than does the production of most other genes. Our results support the hypothesis that noise in gene expression is a biologically important variable, is generally detrimental to organismal fitness, and is subject to natural selection

Additional details

Publishing Information

Journal Title
PLoS Biology
Journal Volume
2
Journal Issue
6
Journal Page Range
[10 p.]
ISSN
1544-9173

INIS

Country of Publication
United States
Country of Input or Organization
United States
INIS RN
36002086
Subject category
S60: APPLIED LIFE SCIENCES;
Descriptors DEI
ESCHERICHIA COLI; FLUCTUATIONS; FORECASTING; GENES; HYPOTHESIS; PRODUCTION; PROTEINS; RANDOMNESS; SACCHAROMYCES CEREVISIAE; TRANSCRIPTION; YEASTS
Descriptors DEC
BACTERIA; EUMYCOTA; FUNGI; MICROORGANISMS; ORGANIC COMPOUNDS; PLANTS; SACCHAROMYCES; VARIATIONS; YEASTS

Optional Information

Contract/Grant/Project number
AC--03-76SF00098
Notes
Journal Publication Date: June 2004
Funding organization
US Department of Energy (United States); PEW Charitable Trusts (United States)
Secondary number(s)
LBNL--55191