Michael M. Domach
Affiliations: | Chemical Engineering and Biomedical Engineering | Carnegie Mellon University, Pittsburgh, PA |
Area:
Microbiology Biology, Chemical Engineering, Biomedical EngineeringWebsite:
https://www.cmu.edu/bme/People/Faculty/profile/mdomach.htmlGoogle:
"Michael Mark Domach" OR "Michael M Domach"Bio:
Parents
Sign in to add mentorMichael L. Shuler | grad student | 1983 | Cornell | |
(Refinement and Use of a Structured Model of a Single Cell of Escherichia Coli for the Description of Ammonia-limited Growth and Asynchronous Population Dynamics) |
Children
Sign in to add traineeChantaraporn Phalakornkule | grad student | 2000 | Carnegie Mellon |
Nathan Domagalski | grad student | 2005 | Carnegie Mellon (Microtree) |
Jonathan W. Meade | grad student | 2013 | Carnegie Mellon (Microtree) |
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Publications
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Meade J, Bartlow P, Trivedi RN, et al. (2015) Effect of plasmid replication deregulation via inc mutations on E. coli proteome & simple flux model analysis. Microbial Cell Factories. 14: 31 |
Trivedi RN, Akhtar P, Meade J, et al. (2014) High-Level Production of Plasmid DNA by Escherichia coli DH5α ΩsacB by Introducing inc Mutations. Applied and Environmental Microbiology. 80: 7154-60 |
Meade J, Khan S, Ataai M, et al. (2012) Use of flux pre-analysis to enable ¹³C tracer studies in pyruvate kinase-deficient Escherichia coli. Biotechnology Journal. 7: 449-60 |
Pan Z, Cunningham DS, Zhu T, et al. (2010) Enhanced recombinant protein production in pyruvate kinase mutant of Bacillus subtilis. Applied Microbiology and Biotechnology. 85: 1769-78 |
Cunningham DS, Koepsel RR, Ataai MM, et al. (2009) Factors affecting plasmid production in Escherichia coli from a resource allocation standpoint. Microbial Cell Factories. 8: 27 |
Cunningham DS, Liu Z, Domagalski N, et al. (2009) Pyruvate kinase-deficient Escherichia coli exhibits increased plasmid copy number and cyclic AMP levels. Journal of Bacteriology. 191: 3041-9 |
Pan Z, Zhu T, Domagalski N, et al. (2006) Regulating expression of pyruvate kinase in Bacillus subtilis for control of growth rate and formation of acidic byproducts. Biotechnology Progress. 22: 1451-5 |
Ghosh S, Grossmann IE, Ataai MM, et al. (2006) A three-level problem-centric strategy for selecting NMR precursor labeling and analytes. Metabolic Engineering. 8: 491-507 |
Zhu T, Pan Z, Domagalski N, et al. (2005) Engineering of Bacillus subtilis for enhanced total synthesis of folic acid. Applied and Environmental Microbiology. 71: 7122-9 |
Ghosh S, Zhu T, Grossmann IE, et al. (2005) Closing the loop between feasible flux scenario identification for construct evaluation and resolution of realized fluxes via NMR Computers and Chemical Engineering. 29: 459-466 |