[HTML][HTML] Metal-responsive regulation of enzyme catalysis using genetically encoded chemical switches

YS Zubi, K Seki, Y Li, AC Hunt, B Liu, B Roux… - Nature …, 2022 - nature.com
Dynamic control over protein function is a central challenge in synthetic biology. To address
this challenge, we describe the development of an integrated computational and …

Metal-responsive regulation of enzyme catalysis using genetically encoded chemical switches

YS Zubi, K Seki, Y Li, AC Hunt, B Liu, B Roux… - Nature …, 2022 - ideas.repec.org
Dynamic control over protein function is a central challenge in synthetic biology. To address
this challenge, we describe the development of an integrated computational and …

[HTML][HTML] Metal-responsive regulation of enzyme catalysis using genetically encoded chemical switches

YS Zubi, K Seki, Y Li, AC Hunt, B Liu, B Roux… - Nature …, 2022 - ncbi.nlm.nih.gov
Dynamic control over protein function is a central challenge in synthetic biology. To address
this challenge, we describe the development of an integrated computational and …

Metal-responsive regulation of enzyme catalysis using genetically encoded chemical switches

YS Zubi, K Seki, Y Li, AC Hunt, B Liu… - Nature …, 2022 - scholars.northwestern.edu
Dynamic control over protein function is a central challenge in synthetic biology. To address
this challenge, we describe the development of an integrated computational and …

Metal-responsive regulation of enzyme catalysis using genetically encoded chemical switches

YS Zubi, K Seki, Y Li, AC Hunt, B Liu… - Nature …, 2022 - econpapers.repec.org
Dynamic control over protein function is a central challenge in synthetic biology. To address
this challenge, we describe the development of an integrated computational and …

Metal-responsive regulation of enzyme catalysis using genetically encoded chemical switches.

YS Zubi, K Seki, Y Li, AC Hunt, B Liu… - Nature …, 2022 - search.ebscohost.com
Dynamic control over protein function is a central challenge in synthetic biology. To address
this challenge, we describe the development of an integrated computational and …

Metal-responsive regulation of enzyme catalysis using genetically encoded chemical switches

YS Zubi, K Seki, Y Li, AC Hunt, B Liu… - Nature …, 2022 - ui.adsabs.harvard.edu
Dynamic control over protein function is a central challenge in synthetic biology. To address
this challenge, we describe the development of an integrated computational and …

[PDF][PDF] Metal-Responsive Regulation of Enzyme Catalysis using Genetically Encoded Chemical Switches

YS Zubi, K Seki, Y Li, A Hunt, B Liu, B Roux, MC Jewett… - scholar.archive.org
The design of allosteric regulation in proteins to dynamically control function is a challenge
in synthetic biology. To address this challenge, we developed an integrated computational …

Metal-responsive regulation of enzyme catalysis using genetically encoded chemical switches

YS Zubi, K Seki, Y Li, AC Hunt, B Liu… - Nature …, 2022 - pubmed.ncbi.nlm.nih.gov
Dynamic control over protein function is a central challenge in synthetic biology. To address
this challenge, we describe the development of an integrated computational and …

Metal-Responsive Regulation of Enzyme Catalysis using Genetically Encoded Chemical Switches

YS Zubi, K Seki, Y Li, A Hunt, B Liu, B Roux, MC Jewett… - 2021 - chemrxiv.org
The design of allosteric regulation in proteins to dynamically control function is a challenge
in synthetic biology. To address this challenge, we developed an integrated computational …