Kieran Smallbone & Pedro Mendes. Large-Scale Metabolic Models: From Reconstruction to Differential Equations. Industrial Biotechnology 9, 4 (2013).
Genome-scale kinetic models of metabolism are important for rational design of the metabolic engineering required for industrial biotechnology applicat...
Kieran Smallbone & Pedro Mendes. Large-Scale Metabolic Models: From Reconstruction to Differential Equations. Industrial Biotechnology 9, 4 (2013).
Genome-scale kinetic models of metabolism are important for rational design of the metabolic engineering required for industrial biotechnology applicat...
Kieran Smallbone & Pedro Mendes. Large-Scale Metabolic Models: From Reconstruction to Differential Equations. Industrial Biotechnology 9, 4 (2013).
Genome-scale kinetic models of metabolism are important for rational design of the metabolic engineering required for industrial biotechnology applicat...
Kieran Smallbone & Pedro Mendes. Large-Scale Metabolic Models: From Reconstruction to Differential Equations. Industrial Biotechnology 9, 4 (2013).
Genome-scale kinetic models of metabolism are important for rational design of the metabolic engineering required for industrial biotechnology applicat...
Kieran Smallbone & Pedro Mendes. Large-Scale Metabolic Models: From Reconstruction to Differential Equations. Industrial Biotechnology 9, 4 (2013).
Genome-scale kinetic models of metabolism are important for rational design of the metabolic engineering required for industrial biotechnology applicat...
In coronavirus (CoV) infection, polyproteins (pp1a/pp1ab) are processed into non-structural proteins (nsps), which largely form the replication/transcription complex (RTC). The polyprotein processing and complex formation is critical and offers potential therapeutic targets. However, the interplay o...