The growth and production of microorganisms in bioconversion are often hampered by heat stress. In this study, an intelligent microbial heat-regulating engine (IMHeRE) was developed and customized to improve the thermo-robustness of Escherichia coli via the integration of a thermotolerant system and a quorum-regulating system. At the cell level, the thermotolerant system composed of different heat shock proteins and RNA thermometers hierarchically expands the optimum temperature by sensing heat changes. At the community level, the quorum-regulating system dynamically programs the altruistic sacrifice of individuals to reduce metabolic heat release by sensing the temperature and cell density. Using this hierarchical, dynamical, and multileve...
Stress response mechanisms in bacteria helps them sustain stressful and competitive environments cau...
A presentation in the Undergraduate Research Kaleidoscope: Library East Commons Performance Space, N...
The molecular mechanism supporting survival at a critical high temperature (CHT) in Escherichia coli...
At the laboratory scale, sudden step increases from 30 to 42\ub0C can be readily accomplished when e...
The Escherichia coli heat shock response (HSR) is a complex mechanism triggered by heat shock and by...
Temperature can be used to control engineered E. coli — for example, the living component of an engi...
Survival of organisms in extreme conditions has necessitated the evolution of stress response networ...
Biological processes have demonstrated the potential to offer cost-effective and environment-friendl...
Bioreactors are very important for cell growth and mass production of intended product, for example...
Organisms have evolved to exploit new environments by processes that involve both mutations and gene...
ABSTRACT Microorganisms growing near the boiling point have enormous biotechnological potential but ...
The heat-shock response is a mechanism of cellular protection against sudden adverse environmental g...
ABSTRACT Temperature is a critical and ubiquitous environmental signal that governs the development ...
The molecular mechanism supporting survival at a critical high temperature (CHT) in Escherichia coli...
Metabolic engineering of microorganisms to produce desirable products on an industrial scale can res...
Stress response mechanisms in bacteria helps them sustain stressful and competitive environments cau...
A presentation in the Undergraduate Research Kaleidoscope: Library East Commons Performance Space, N...
The molecular mechanism supporting survival at a critical high temperature (CHT) in Escherichia coli...
At the laboratory scale, sudden step increases from 30 to 42\ub0C can be readily accomplished when e...
The Escherichia coli heat shock response (HSR) is a complex mechanism triggered by heat shock and by...
Temperature can be used to control engineered E. coli — for example, the living component of an engi...
Survival of organisms in extreme conditions has necessitated the evolution of stress response networ...
Biological processes have demonstrated the potential to offer cost-effective and environment-friendl...
Bioreactors are very important for cell growth and mass production of intended product, for example...
Organisms have evolved to exploit new environments by processes that involve both mutations and gene...
ABSTRACT Microorganisms growing near the boiling point have enormous biotechnological potential but ...
The heat-shock response is a mechanism of cellular protection against sudden adverse environmental g...
ABSTRACT Temperature is a critical and ubiquitous environmental signal that governs the development ...
The molecular mechanism supporting survival at a critical high temperature (CHT) in Escherichia coli...
Metabolic engineering of microorganisms to produce desirable products on an industrial scale can res...
Stress response mechanisms in bacteria helps them sustain stressful and competitive environments cau...
A presentation in the Undergraduate Research Kaleidoscope: Library East Commons Performance Space, N...
The molecular mechanism supporting survival at a critical high temperature (CHT) in Escherichia coli...