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Molecule Parameter List for L

The statistics table lists the distribution of a molecule acting either as a substrate, product, enzyme or as a molecule within the network.
The text color of a molecule is highlighted by color.
Statistics
L participated asMoleculeSum total ofEnzymeSubstrate of an enzymeProduct of an enzymeSubstrate in ReactionProduct in Reaction
No. of occurrences1000010

Accession and Pathway Details
Accession NameAccession No.Accession TypePathway Link
  • MAPK_Asthagiri_
    enz_fb
  • 46Pathway
    MAPK_Asthagiri_enz_fb 
    This is a complex model to examine mechanisms that govern MAPK pathway dynamics in Chinese hamster ovary (CHO) cell lines, particularly the role of enzyme targeted negative feedback mechanism in generating downstream signal adaptation. This model simulates the results as per the simulation conditions specified for figure 7B of the paper by Asthagiri AR and Lauffenburger DA. Biotechnol Prog. (2001) 17(2):227-39.
    However, there is some discrepancy with the outputs shown in Figure 7B.

    L acting as a Molecule in  
    MAPK_Asthagiri_enz_fb Network
    NameAccession NamePathway NameInitial Conc.
    (uM)
    Volume
    (fL)
    Buffered
    L
  • MAPK_Asthagiri_
    enz_fb

    Accession No. : 46
  • MAPK_Asthagiri_
    enz_fb

    Pathway No. : 194
  • 0.03390Yes
    L CoInit = buffered at 0.03 uM from Asthagiri, A.R and Lauffenburger, D.A Biotechnol. Prog. 2001, 17, 227-239.

    L acting as a Substrate in a reaction in  
    MAPK_Asthagiri_enz_fb Network
    Kd is calculated only for second order reactions, like nA+nB <->nC or nA<->nC+nD, where n is number and A,B,C,D are molecules, where as for first order reactions Keq is calculated. Kd for higher order reaction are not consider.
    NameAccession NamePathway NameKfKbKdtauReagents
    L-bind-R
  • MAPK_Asthagiri_
    enz_fb

    Accession No. : 46
  • MAPK_Asthagiri_
    enz_fb

    Pathway No. : 194
  • 0.1666
    (uM^-1 s^-1)
    0.005
    (s^-1)
    Kd(bf) = 0.03(uM)-Substrate
    L
    R

    Product
    C
    Kf = 10^7/M-1 min-1 and Kr is 0.3 min-1 from Asthagiri, A.R and Lauffenburger, D.A Biotechnol. Prog. 2001, 17, 227-239.



    Database compilation and code copyright (C) 2022, Upinder S. Bhalla and NCBS/TIFR
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