pACYC184

Ancestors
Derivated

pSTV28

pACYCDuet-1

pCar184

pBE7

pLH01

pJLBaroGfbr

pAC-DHsI*mlS

pAC-TBBsEMX


Main features
p15A ori

Selection marker:

Tetracycline

Chloramphenicol






Strains harboring plasmid pACYC184

Escherichia coli LH00


References

Hyung Seok Choi, Sang Yup Lee, Tae Yong Kim & Han Min Woo (2010). In Silico Identification of Gene Amplification Targets for Improvement of Lycopene Production▿ †. Applied and Environmental Microbiology.

Kwang Ho Lee, Jin Hwan Park, Tae Yong Kim, Hyun Uk Kim & Sang Yup Lee (2007). Systems metabolic engineering of Escherichia coli for L‐threonine production. Molecular Systems Biology.

Han Liu, Guochen Fang, Hui Wu, Zhimin Li & Qin Ye (2018). L‐Cysteine Production in Escherichia coli Based on Rational Metabolic Engineering and Modular Strategy. Biotechnology Journal.

José Luis Báez‐Viveros, Joel Osuna, Georgina Hernández‐Chávez, Xavier Soberón, Francisco Bolívar & Guillermo Gosset (2004). Metabolic engineering and protein directed evolution increase the yield of L‐phenylalanine synthesized from glucose in Escherichia coli. Biotechnology & Bioengineering.

Pu, W., Chen, J., Zhou, Y. et al. Systems metabolic engineering of Escherichia coli for hyper-production of 5‑aminolevulinic acid. Biotechnol Biofuels 16, 31 (2023).

Li, Qingchen; Li, Chenxi; Zhong, Jie; Wang, Yukun; Yang, Qinghua; Wang, Bingmei; He, Wenjin; Huang, Jianzhong; Lin, Shengyuan & Qi, Feng. Metabolic engineering of Escherichia coli for N-methylserotonin biosynthesis. Metabolic Engineering. 2025, 87, 49-59.