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Systems approaches for optimizing CO2 fixation pathways

delete2026-07-01
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PRE
AI
A
Axel Knave
L
Lupacchini, Sara
E
Elton P. Hudson *
DOI:10.1016/j.copbio.2026.103551delete
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Abstract

Abstract

En 中文
We survey recent works on designing and implementing CO2 fixation pathways. We describe how these studies reveal a gap between a well-designed pathway and a productive strain. This gap includes phenomena that are often not accounted for in design, such as hidden enzyme energy usage and regulatory rewiring during adaptive evolution. Several systems biology tools can help overcome this gap. Kinetic models can be generated rapidly using new algorithms, and when coupled with retrobiosynthesis, can evaluate pathway dynamics and stability in the context of the native network. Quantitative and interaction proteomics reveal how the host strain adapts to novel pathways and can identify interference from native metabolites. In vivo optimization through adaptive laboratory evolution is used extensively to optimize modules or whole pathways, but requires the pathway phenotype to be linked to growth. Postevolution characterization reveals that cells optimize pathway integration through substantial proteome reallocation.

Journal

Current Opinion in Biotechnology cover
Current Opinion in Biotechnology
IF:
7
Papers:
5.0K
Citations:
1.9W

Organization

R
royal institute of technology
Scholars:
172
Papers: 94
Citations: 0
Cited Papers

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