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ACS Synthetic Biology

ACS Synthetic Biology

IF:3.7 CiteScore:8 Articles:380
The journal is particularly interested in studies on the design and synthesis of new genetic circuits and gene products; computational methods in the design of systems; and integrative applied approaches to understanding disease and metabolism. Topics may include, but are not limited to: Design and optimization of genetic systems Genetic circuit design and their principles for their organization into programs Computational methods to aid the design of genetic systems Experimental methods to quantify genetic parts, circuits, and metabolic fluxes Genetic parts libraries: their creation, analysis, and ontological representation Protein engineering including computational design Metabolic engineering and cellular manufacturing, including biomass conversion Natural product access, engineering, and production Creative and innovative applications of cellular programming Medical applications, tissue engineering, and the programming of therapeutic cells Minimal cell design and construction Genomics and genome replacement strategies Viral engineering Automated and robotic assembly platforms for synthetic biology DNA synthesis methodologies Metagenomics and synthetic metagenomic analysis Bioinformatics applied to gene discovery, chemoinformatics, and pathway construction Gene optimization Methods for genome-scale measurements of transcription and metabolomics Systems biology and methods to integrate multiple data sources in vitro and cell-free synthetic biology and molecular programming Nucleic acid engineering.

Biosynthesis of 1,3-Propanediol via a New Pathway from Glucose in Escherichia coli

Published: 14 June 2023 DOI: 10.1021/acssynbio.3c00122
Mingda Li, Yang Zhang, Jingchuan Li and Tianwei Tan*, 

Combinatorial Protein Engineering and Metabolic Engineering for Efficient Synthesis of l-Histidine in Corynebacterium glutamicum

Published: 7 April 2023 DOI: 10.1021/acssynbio.3c00026
Meng Chai, Xianhao Xu, Yanfeng Liu, Jianghua Li, Guocheng Du, Xueqin Lv and Long Liu*,