Inspired by signaling networks in living cells, DNA-based programming aims for the engineering of biochemical networks capable of advanced regulatory and computational functions under controlled cell-free conditions. While regulatory circuits in cells control downstream processes through hierarchical layers of signal processing, coupling of enzymatically driven DNA-based networks to downstream processes has rarely been reported. Here, we expand the scope of molecular programming by engineering hierarchical control of enzymatic actuators using feedback-controlled DNA-circuits capable of advanced regulatory dynamics. We developed a translator module that converts signaling molecules from the upstream network to unique DNA strands driving down...
Deoxyribonucleic acid (DNA), a genetic material, encodes all living information and living character...
Deoxyribonucleic acid (DNA), a genetic material, encodes all living information and living character...
International audienceMolecular programming takes advantage of synthetic nucleic acid biochemistry t...
Inspired by signaling networks in living cells, DNA-based programming aims for the engineering of bi...
Inspired by signaling networks in living cells, DNA-based programming aims for the engineering of bi...
\u3cp\u3eInspired by signaling networks in living cells, DNA-based programming aims for the engineer...
Inspired by signaling networks in living cells, DNA-based programming aims for the engineering of bi...
Inspired by signaling networks in living cells, DNA-based programming aims for the engineering of bi...
Biological organisms use complex molecular networks to navigate their environment and regulate their...
Biological organisms use complex molecular networks to navigate their environment and regulate their...
Biological organisms use complex molecular networks to navigate their environment and regulate their...
Researchers increasingly envision an important role for artificial biochemical circuits in biologica...
The development of large-scale molecular computational networks is a promising approach to implement...
The design of synthetic circuits for controlling molecular-scale processes is an important goal of s...
Developing DNA strand displacement reactions (SDRs) offers crucial technical support for regulating ...
Deoxyribonucleic acid (DNA), a genetic material, encodes all living information and living character...
Deoxyribonucleic acid (DNA), a genetic material, encodes all living information and living character...
International audienceMolecular programming takes advantage of synthetic nucleic acid biochemistry t...
Inspired by signaling networks in living cells, DNA-based programming aims for the engineering of bi...
Inspired by signaling networks in living cells, DNA-based programming aims for the engineering of bi...
\u3cp\u3eInspired by signaling networks in living cells, DNA-based programming aims for the engineer...
Inspired by signaling networks in living cells, DNA-based programming aims for the engineering of bi...
Inspired by signaling networks in living cells, DNA-based programming aims for the engineering of bi...
Biological organisms use complex molecular networks to navigate their environment and regulate their...
Biological organisms use complex molecular networks to navigate their environment and regulate their...
Biological organisms use complex molecular networks to navigate their environment and regulate their...
Researchers increasingly envision an important role for artificial biochemical circuits in biologica...
The development of large-scale molecular computational networks is a promising approach to implement...
The design of synthetic circuits for controlling molecular-scale processes is an important goal of s...
Developing DNA strand displacement reactions (SDRs) offers crucial technical support for regulating ...
Deoxyribonucleic acid (DNA), a genetic material, encodes all living information and living character...
Deoxyribonucleic acid (DNA), a genetic material, encodes all living information and living character...
International audienceMolecular programming takes advantage of synthetic nucleic acid biochemistry t...