Bacterial growth laws reflect the evolutionary importance of energy efficiency

scientific article

Bacterial growth laws reflect the evolutionary importance of energy efficiency is …
instance of (P31):
scholarly articleQ13442814

External links are
P819ADS bibcode2015PNAS..112..406M
P356DOI10.1073/PNAS.1421138111
P932PMC publication ID4299221
P698PubMed publication ID25548180
P5875ResearchGate publication ID273279480

P50authorKen A. DillQ6387211
Arijit MaitraQ125319155
P2860cites workFitness and its role in evolutionary geneticsQ22122004
A feeling for the numbers in biologyQ24652476
Quantification of protein half-lives in the budding yeast proteomeQ24674092
Superresolution imaging of ribosomes and RNA polymerase in live Escherichia coli cellsQ27976501
Proteome half-life dynamics in living human cellsQ28303198
The cost of expression of Escherichia coli lac operon proteins is in the process, not in the productsQ33317948
Growth landscape formed by perception and import of glucose in yeastQ33348349
Transcriptome and proteome exploration to model translation efficiency and protein stability in Lactococcus lactisQ33519510
Shifts in metabolic scaling, production, and efficiency across major evolutionary transitions of lifeQ33628379
Influence of Polyamine Limitation on the Chain Growth Rates of β-Galactosidase and of Its Messenger Ribonucleic AcidQ33787753
Metabolic flux analysis of Escherichia coli in glucose-limited continuous culture. I. Growth-rate-dependent metabolic efficiency at steady stateQ33985650
Quantitative relationships for specific growth rates and macromolecular compositions of Mycobacterium tuberculosis, Streptomyces coelicolor A3(2) and Escherichia coli B/r: an integrative theoretical approachQ34319498
Optimality and evolutionary tuning of the expression level of a proteinQ34437723
Multiple high-throughput analyses monitor the response of E. coli to perturbationsQ34578020
Emergence of robust growth laws from optimal regulation of ribosome synthesisQ34986653
Bacterial growth laws and their applicationsQ35154086
Induction Kinetics of the l -Arabinose Operon of Escherichia coliQ36764116
Initiation of ribosome degradation during starvation in Escherichia coliQ37168958
Molecular crowding limits translation and cell growthQ37240537
Proteome turnover in bacteria: current status for Corynebacterium glutamicum and related bacteriaQ37274920
Thermodynamic efficiency of microbial growth is low but optimal for maximal growth rateQ37601139
Why can't a cell grow infinitely fast?Q38193900
Utilization of energy for growth and maintenance in continuous and batch cultures of microorganisms. A reevaluation of the method for the determination of ATP production by measuring molar growth yieldsQ39926656
The status of YATP and maintenance energy as biologically interpretable phenomenaQ40191398
Escherichia coli ribosomes translate in vivo with variable rateQ41585797
Growth rate-dependent global effects on gene expression in bacteriaQ42062295
Shifts in growth strategies reflect tradeoffs in cellular economicsQ42242972
Overflow metabolism in Escherichia coli during steady-state growth: transcriptional regulation and effect of the redox ratioQ42247966
Polypeptide-chain-elongation rate in Escherichia coli B/r as a function of growth rateQ42538522
Synthesis time of β-galactosidase in Escherichia coli B/r as a function of growth rateQ42556111
Invariant distribution of promoter activities in Escherichia coliQ42578869
Continued protein synthesis at low [ATP] and [GTP] enables cell adaptation during energy limitationQ43192524
Multidimensional optimality of microbial metabolismQ43431493
Peptide chain initiation and growth in the induced synthesis of β-galactosidaseQ44251884
Growth rate of polypeptide chains as a function of the cell growth rate in a mutant of Escherichia coli 15Q44673696
The energetics of Escherichia coli during aerobic growth in continuous cultureQ44679877
Interdependence of cell growth and gene expression: origins and consequences.Q45940657
Dependency on medium and temperature of cell size and chemical composition during balanced grown of Salmonella typhimuriumQ47434584
Chain elongation rate of messenger and polypeptides in slowly growing Escherichia coliQ53771896
Protein-length distributions for the three domains of lifeQ60017703
Costs of accuracy determined by a maximal growth rate constraintQ70630340
The inefficiency of ribosomes functioning in Escherichia coli growing at moderate ratesQ72130414
P433issue2
P407language of work or nameEnglishQ1860
P921main subjectenergy efficiencyQ192704
P304page(s)406-411
P577publication date2014-12-29
P1433published inProceedings of the National Academy of Sciences of the United States of AmericaQ1146531
P1476titleBacterial growth laws reflect the evolutionary importance of energy efficiency
P478volume112

Reverse relations

cites work (P2860)
Q64076456A yield-cost tradeoff governs s decision between fermentation and respiration in carbon-limited growth
Q28834528Addressing biological uncertainties in engineering gene circuits
Q90117746An analytical theory of balanced cellular growth
Q47923051An integrative circuit-host modelling framework for predicting synthetic gene network behaviours
Q28830711Analytic derivation of bacterial growth laws from a simple model of intracellular chemical dynamics
Q47429185Antibiotic efficacy-context matters
Q36802439Architectural transitions in Vibrio cholerae biofilms at single-cell resolution
Q26739810Bacterial Communities: Interactions to Scale
Q37173084Benefit of transferred mutations is better predicted by the fitness of recipients than by their ecological or genetic relatedness
Q47097515Co-adaption of tRNA gene copy number and amino acid usage influences translation rates in three life domains
Q28584691Competing metabolic strategies in a multilevel selection model
Q90639312Competition Between Butyrate Fermenters and Chain-Elongating Bacteria Limits the Efficiency of Medium-Chain Carboxylate Production
Q37236336Coordination of Metabolism and Virulence Factors Expression of Extraintestinal Pathogenic Escherichia coli Purified from Blood Cultures of Patients with Sepsis
Q37657566Departure from optimal O2 level for mouse trophoblast stem cell proliferation and potency leads to most rapid AMPK activation
Q96303224Distinct metabolic states of a cell guide alternate fates of mutational buffering through altered proteostasis
Q92266036Drought-induced soil microbial amino acid and polysaccharide change and their implications for C-N cycles in a climate change world
Q35950828Dynamical Allocation of Cellular Resources as an Optimal Control Problem: Novel Insights into Microbial Growth Strategies
Q90317101Dynamics of bacterial population growth in biofilms resemble spatial and structural aspects of urbanization
Q39670746Evolution of initiator tRNAs and selection of methionine as the initiating amino acid
Q92218161From Root to Tips: Sporulation Evolution and Specialization in Bacillus subtilis and the Intestinal Pathogen Clostridioides difficile
Q57176828From function to structure take the archaeal TRAM
Q99348831In vitro ileal and caecal fermentation of fibre substrates in the growing pig given a human-type diet
Q35156840Mechanistic links between cellular trade-offs, gene expression, and growth
Q38273049Modeling the Overproduction of Ribosomes when Antibacterial Drugs Act on Cells
Q56985328Noise propagation in an integrated model of bacterial gene expression and growth
Q96022845Predictive biology: modelling, understanding and harnessing microbial complexity
Q46133355Quantifying the benefit of a proteome reserve in fluctuating environments
Q64229896Quantitative insights into the cyanobacterial cell economy
Q89982802Ribosome dimerization protects the small subunit
Q47827613Ribosomes are optimized for autocatalytic production
Q38924689Role of Proteome Physical Chemistry in Cell Behavior
Q39110261Structure and dynamics of bacterial ribosome biogenesis
Q64975036Survival of the fewest: Microbial dormancy and maintenance in marine sediments through deep time.
Q46138830Thermosensitivity of growth is determined by chaperone-mediated proteome reallocation
Q91843104Toward a genome scale sequence specific dynamic model of cell-free protein synthesis in Escherichia coli

Search more.