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Development of High-Performance Whole Cell Biosensors Aided by Statistical Modeling
ACS Synthetic Biology
|February 6, 2020
Summary
Whole cell biosensors use design of experiments (DoE) to optimize gene expression for enhanced performance. This method efficiently maps biosensor responses to chemicals like protocatechuic acid and ferulic acid.
Area of Science:
- Synthetic biology
- Biotechnology
- Metabolic engineering
Background:
- Whole cell biosensors link chemical stimuli to gene expression for sensing.
- Optimizing biosensor regulatory components is challenging due to complex gene expression requirements.
- Classical methods are inefficient for exploring multidimensional experimental spaces.
Purpose of the Study:
- To apply a design of experiments (DoE) methodology for efficient mapping of gene expression levels in whole cell biosensors.
- To enhance biosensor performance by systematically optimizing regulatory components.
- To improve biosensors for detecting lignin biomass breakdown products like protocatechuic acid and ferulic acid.
Main Methods:
- Employed a design of experiments (DoE) methodology to systematically explore gene expression parameters.
- Applied DoE to two whole cell biosensors responding to protocatechuic acid and ferulic acid.
- Modified biosensor dose-response curves by adjusting regulatory components.
Main Results:
- Achieved significant improvements in biosensor performance metrics.
- Increased maximum signal output by up to 30-fold.
- Enhanced dynamic range (>500-fold), sensing range (~4-orders of magnitude), and sensitivity (>1500-fold).
- Modulated dose-response curves to achieve both digital and analog behaviors.
- Demonstrated successful optimization of biosensors for lignin-derived compounds.
Conclusions:
- Design of experiments (DoE) provides an efficient approach for optimizing whole cell biosensors.
- This methodology enables fine-tuning of biosensor characteristics, including sensitivity, dynamic range, and response type.
- The DoE method shows significant promise for optimizing novel regulatory systems and metabolic pathways.
Keywords:
definitive screening designdesign of experimentsferulic acidprotocatechuic acidwhole cell biosensors
