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Molecule Parameter List for CaMKII-thr286

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
CaMKII-thr286 participated asMoleculeSum total ofEnzymeSubstrate of an enzymeProduct of an enzymeSubstrate in ReactionProduct in Reaction
No. of occurrences1203110

Accession and Pathway Details
Accession NameAccession No.Accession TypePathway Link
CaMKII_model363Network
Shared_Object_CaMKII_model3 CaMKII CaM 
PP1 PP2B PP1_PSD 
AC PKA 
This is the complete model of CaMKII bistability, model 3. It exhibits bistability in CaMKII activation due to autophosphorylation at the PSD and local saturation of PP1. This version of model 3 includes PKA regulatory input. This has little effect on the deterministic calculations, but the PKA pathway introduces a lot of noise which causes a difference in stochastic runs.

CaMKII-thr286 acting as a Molecule in  
CaMKII_model3 Network
NameAccession NamePathway NameInitial Conc.
(uM)
Volume
(fL)
Buffered
CaMKII-thr286CaMKII_model3
Accession No. : 63
CaMKII
Pathway No. : 264
00.09No
I am not sure if we need to endow this one with a lot of enzs. It is likely to be a short-lived intermediate, since it will be phosphorylated further as soon as the CAM falls off.

CaMKII-thr286 acting as a Summed Molecule in  
CaMKII_model3 Network
 Accession NanePathway NameTargetInput
1CaMKII_model3
Accession No. : 63
CaMKII
Pathway No. : 264
tot_autonomous_CaMKIICaMKII-thr286
CaMKII***
  • basal_CaMKII_
    cyt

  • 2CaMKII_model3
    Accession No. : 63
  • Shared_Object_
    CaMKII_model3

    Pathway No. : 263
  • tot_CaMKII_cytCaMKII-CaM
  • CaMKII-thr286*-C
    aM

    CaMKII-thr286
    CaMKII***
    CaMK-thr305
    CaMKII
  • basal_CaMKII_
    cyt


  • CaMKII-thr286 acting as a Substrate for an Enzyme in  
    CaMKII_model3 Network
     Enzyme Molecule /
    Enzyme Activity
    Accession NamePathway NameKm (uM)kcat (s^-1)RatioEnzyme TypeReagents
    1PP1-active  /
    Deph-thr286b
    CaMKII_model3
    Accession No. : 63
  • Shared_Object_
    CaMKII_model3

    Pathway No. : 263
  • 5.099052.54explicit E-S complexSubstrate
    CaMKII-thr286

    Product
    CaMKII
    2tot_CaM_CaMKII  /
    CaM_act_305
    CaMKII_model3
    Accession No. : 63
    CaMKII
    Pathway No. : 264
    226.99864explicit E-S complexSubstrate
    CaMKII-thr286

    Product
    CaMKII***
        Rates from autocamtide phosphorylation, from Hanson and Schulman JBC 267:24 17216-17224 1992. Jan 1 1998: Speed up 12x to match fig 5.
    3
  • tot_autonomous_
    CaMKII
      /
    auton_305
  • CaMKII_model3
    Accession No. : 63
    CaMKII
    Pathway No. : 264
    35064explicit E-S complexSubstrate
    CaMKII-thr286

    Product
    CaMKII***
        See Hanson and Schulman again, for afterburst rates of phosph.

    CaMKII-thr286 acting as a Product of an Enzyme in  
    CaMKII_model3 Network
    Enzyme Molecule /
    Enzyme Activity
    Accession NamePathway NameKm (uM)kcat (s^-1)RatioEnzyme TypeReagents
    PP1-active  /
    Deph-thr305
    CaMKII_model3
    Accession No. : 63
  • Shared_Object_
    CaMKII_model3

    Pathway No. : 263
  • 5.099052.54explicit E-S complexSubstrate
    CaMKII***

    Product
    CaMKII-thr286

    CaMKII-thr286 acting as a Substrate in a reaction in  
    CaMKII_model3 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
  • CaMK-thr286-bind
    -CaM
  • CaMKII_model3
    Accession No. : 63
    CaMKII
    Pathway No. : 264
    1000.19
    (uM^-1 s^-1)
    0.1
    (s^-1)
    Kd(bf) = 0.0001(uM)-Substrate
    CaM-Ca4
    CaMKII-thr286

    Product
  • CaMKII-thr286*-C
    aM

  • Affinity is up 1000X. Time to release is about 20 sec, so the kb is OK at 0.1 This makes Kf around 1.6666e-3



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