Bhattacharya2011_UreaCycle

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This model is from the article:
Time Scale Simulation of Vmax of Urea Cycle Enzymes.
Pradip Bhattacharya, Alok Srivastava, Sarbashish Das, Samiyadeep Nandi, Ganeshan Tamil, Ashutosh Viswabandhu, HemantaKwashua, Rabi Yadav Lokesh Nigam, Anmol Khan, Chetna Singh, Arvind Mer, Vikram Sinha, Rehan Mohommad, Candida Vaz, R.N. Rai, D.K. Lobyal, International Journal of Evolution Equations 2011; 5(4); URL
Abstract:
The objective of this study was to initialize the time-scale simulation of urea cycle enzymes based on the very limited amount of experimental data. As a model example, Vmax of each four enzymes was simulated with varying time for some organisms. These results indicated that the values of Vmax of time-scale simulation of all four enzymatic reactions of urea cycle were very close to 0.09-0.4, and were comparable (deviation ≤0.01-0.1) for steady state kinetic measurements. Enzymes of several organisms were included in this study protocol.

Note: The author submitted the model twice accidently. This model is identical to MODEL0318407497

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Format
SBML (L2V1)
Related Publication
  • Time Scale Simulation of Vmax of Urea Cycle Enzymes
  • Pradip Bhattacharya, Alok Srivastava, Sarbashish Das, Samiyadeep Nandi, Ganeshan Tamil, Ashutosh Viswabandhu, HemantaKwashua, Rabi Yadav Lokesh Nigam, Anmol Khan, Chetna Singh, Arvind Mer, Vikram Sinha, Rehan Mohommad, Candida Vaz, R.N. Rai, D.K. Lobyal
  • International Journal of Evolution Equations 2011; 5(4) 2011
  • School of Life Science, School of Information Technology, School of Computer Centre, Jawaharlal Nehru University, New Delhi 110067
  • The objective of this study was to initialize the time-scale simulation of urea cycle enzymes based on the very limited amount of experimental data. As a model example, Vmax of each four enzymes was simulated with varying time for some organisms. These results indicated that the values of Vmax of time-scale simulation of all four enzymatic reactions of urea cycle were very close to 0.09-0.4, and were comparable (deviation â?¤0.01-0.1) for steady state kinetic measurements. Enzymes of several organisms were included in this study protocol.
Contributors
pradip bhattacharya

Metadata information

is
BioModels Database MODEL0318212660
hasTaxon
Taxonomy Homo sapiens
isVersionOf
Gene Ontology urea cycle
hasProperty
Mathematical Modelling Ontology Ordinary differential equation model
Curation status
Non-curated
  • Model originally submitted by : pradip bhattacharya
  • Submitted: 21-Apr-2009 13:50:13
  • Last Modified: 12-Apr-2012 12:18:41
Revisions
  • Version: 2 public model Download this version
    • Submitted on: 12-Apr-2012 12:18:41
    • Submitted by: pradip bhattacharya
    • With comment: Current version of Bhattacharya2011_UreaCycle
  • Version: 1 public model Download this version
    • Submitted on: 21-Apr-2009 13:50:13
    • Submitted by: pradip bhattacharya
    • With comment: Original import of MODEL0318212660.xml.origin