Publications

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Author [ Title(Asc)] Type Year
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Chou, C. P. , Kuo, B. Y. , & Lin, W. J. . (1999). Optimization of the host/vector system and culture conditions for production of penicillin acylase in Escherichia coli. Journal of Bioscience and Bioengineering, 88, 160-167.
Akbari, V. , Sadeghi, H. M. M. , Jafarian-Dehkordi, A. , Chou, C. P. , & Abedi, D. . (2015). Optimization of a single-chain antibody fragment overexpression in Escherichia coli using response surface methodology. Research in Pharmaceutical Sciences, 10, 75-83.
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Zhang, L. , Moo-Young, M. , & Chou, C. P. . (2011). Molecular manipulation associated with disulfide bond formation to enhance the stability of recombinant therapeutic protein. Protein Expression and Purification, 75, 28-39.
Gheshlaghi, R. , Scharer, J. M. , Moo-Young, M. , & Chou, C. P. . (2009). Metabolic pathways of clostridia for producing butanol. Biotechnology Advances, 27, 764-781. 2009_metabolic_pathways_of_clostridia_for_producing_butanol.pdf
Westbrook, A. W. , Ren, X. , Oh, J. , Moo-Young, M. , & Chou, C. P. . (2018). Metabolic engineering to enhance heterologous production of hyaluronic acid in Bacillus subtilis. Metabolic Engineering, 47, 401-413. 2018_metabolic_engineering_to_enhance_heterologous_production_of_hyaluronic_acid_in_bacillus_subtilis.pdf
Westbrook, A. W. , Ren, X. , Moo-Young, M. , & Chou, C. P. . (2018). Metabolic engineering of Bacillus subtilis for l-valine overproduction. Biotechnology and Bioengineering, 115, 2778-2792. 2018_metabolic_engineering_of_bacillus_subtilis_forl-valine_overproduction.pdf
Chou, C. P. , Tseng, J. H. , Lin, M. I. , Lin, H. K. , & Yu, C. C. . (1999). Manipulation of carbon assimilation with respect to expression of the pac gene for improving production of penicillin acylase in Escherichia coli. Journal of Biotechnology, 69, 27-38.
Srirangan, K. , Akawi, L. , Liu, X. J. , Westbrook, A. , Blondeel, E. J. M. , Aucoin, M. G. , Moo-Young, M. , et al. (2013). Manipulating the sleeping beauty mutase operon for the production of 1-propanol in engineered Escherichia coli. Biotechnology for Biofuels, 6. 2013_manipulating_the_sleeping_beauty_mutase_operon_for_the_production_of_1-propanol_in_engineered_escherichia_coli.pdf
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Miscevic, D. , Mao, J. - Y. , Abedi, D. , Huang, C. - C. , Moo-Young, M. , & Chou, C. P. . (2020). Integrated strain engineering and bioprocessing strategies for high-level bio-based production of 3-hydroxyvalerate in Escherichia coli. Applied Microbiology and Biotechnology, 104, 5259-5272. 2020_integrated_strain_engineering_and_bioprocessing_strategies_for_high-level_bio-based_production_of_3-hydroxyvalerate_in_escherichia_coli.pdf
Orr, V. , Scharer, J. , Moo-Young, M. , Honeyman, C. H. , Fenner, D. , Crossley, L. , Suen, S. Y. , et al. (2012). Integrated development of an effective bioprocess for extracellular production of penicillin G acylase in Escherichia coli and its subsequent one-step purification. Journal of Biotechnology, 161, 19-26.
Narayanan, N. , Follonier, S. , & Chou, C. P. . (2008). In vivo monitoring and alleviation of extracytoplasmic stress to recombinant protein overproduction in the periplasm of Escherichia coli. Biochemical Engineering Journal, 42, 13-19.
Lin, Y. H. , Fang, W. L. , Lin, W. J. , Huang, S. W. , & Chou, C. P. . (2001). Improving production of penicillin acylase in Escherichia coli via efficient DegP-mediated processing of precursors in periplasm. Process Biochemistry, 37, 23-30.
Pyne, M. E. , Utturkar, S. , Brown, S. D. , Moo-Young, M. , Chung, D. A. , & C. Chou, P. . (2014). Improved Draft Genome Sequence of Clostridium pasteurianum Strain ATCC 6013 (DSM 525) Using a Hybrid Next-Generation Sequencing Approach. Genome announcements, 2, e00790-14.
Akbari, V. , Sadeghi, H. M. M. , Jafarian-Dehkordi, A. , Abedi, D. , & Chou, C. P. . (2015). Improved biological activity of a single chain antibody fragment against human epidermal growth factor receptor 2 (HER2) expressed in the periplasm of Escherichia coli. Protein Expression and Purification, 116, 66-74.
Ge, W. , Arp, J. , Lian, D. M. , Liu, W. H. , Baroja, M. L. , Jiang, J. F. , Ramcharran, S. , et al. (2010). Immunosuppression Involving Soluble CD83 Induces Tolerogenic Dendritic Cells That Prevent Cardiac Allograft Rejection. Transplantation, 90, 1145-1156.

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