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Accession Type:
Network
Ajay_Bhalla_
2007_ReacDiff2
Shared_Object_
Ajay_Bhalla_
2007_ReacDiff
PKC
MAPK
Ras
CaM
PKM
chain
Shared Object_
Ajay_Bhalla_
2007_ReacDiff2
PKC
MAPK
Ras
CaM
PKM
Shared Object_
Ajay_Bhalla_
2007_ReacDiff2_
[1]
PKC
MAPK
Ras
Shared Object_
Ajay_Bhalla_
2007_ReacDiff2_
[3]
CaM
PKM
Shared Object_
Ajay_Bhalla_
2007_ReacDiff2_
[2]
PKC
MAPK
Ras
CaM
PKM
PKC
MAPK
Ras
CaM
PKM
Shared Object_
Ajay_Bhalla_
2007_ReacDiff2_
[4]
PKC
MAPK
Ras
CaM
PKM
Shared Object_
Ajay_Bhalla_
2007_ReacDiff2_
[5]
PKC
MAPK
Ras
CaM
PKM
Shared Object_
Ajay_Bhalla_
2007_ReacDiff2_
[6]
PKC
MAPK
Ras
CaM
PKM
Shared Object_
Ajay_Bhalla_
2007_ReacDiff2_
[7]
PKC
MAPK
Ras
CaM
PKM
Shared Object_
Ajay_Bhalla_
2007_ReacDiff2_
[8]
PKC
MAPK
Ras
CaM
PKM
Shared Object_
Ajay_Bhalla_
2007_ReacDiff2_
[9]
PKC
MAPK
Ras
CaM
PKM
Shared Object_
Ajay_Bhalla_
2007_ReacDiff2_
[10]
PKC
MAPK
Ras
CaM
PKM
Shared Object_
Ajay_Bhalla_
2007_ReacDiff2_
[11]
PKC
MAPK
Ras
 Molecule
 Enzyme
 Reaction
CaM
PKM
Shared Object_
Ajay_Bhalla_
2007_ReacDiff2_
[12]
PKC
MAPK
Ras
CaM
PKM
Shared Object_
Ajay_Bhalla_
2007_ReacDiff2_
[13]
PKC
MAPK
Ras
CaM
PKM
Shared Object_
Ajay_Bhalla_
2007_ReacDiff2_
[14]
PKC
MAPK
Ras
CaM
PKM
Shared Object_
Ajay_Bhalla_
2007_ReacDiff2_
[15]
PKC
MAPK
Ras
CaM
PKM
Shared Object_
Ajay_Bhalla_
2007_ReacDiff2_
[16]
PKC
MAPK
Ras
CaM
PKM
Shared Object_
Ajay_Bhalla_
2007_ReacDiff2_
[17]
PKC
MAPK
Ras
CaM
PKM
Shared Object_
Ajay_Bhalla_
2007_ReacDiff2_
[18]
PKC
MAPK
Ras
CaM
PKM
Shared Object_
Ajay_Bhalla_
2007_ReacDiff2_
[19]
PKC
MAPK
Ras
CaM
PKM
Shared Object_
Ajay_Bhalla_
2007_ReacDiff2_
[20]
PKC
MAPK
Ras
CaM
PKM
Shared Object_
Ajay_Bhalla_
2007_ReacDiff2_
[21]
PKC
MAPK
Ras
CaM
PKM
Shared Object_
Ajay_Bhalla_
2007_ReacDiff2_
[22]
PKC
MAPK
Ras
CaM
PKM
Shared Object_
Ajay_Bhalla_
2007_ReacDiff2_
[23]
PKC
MAPK
Ras
CaM
PKM
Shared Object_
Ajay_Bhalla_
2007_ReacDiff2_
[24]
PKC
MAPK
Ras
CaM
PKM
Shared Object_
Ajay_Bhalla_
2007_ReacDiff2_
[25]
PKC
MAPK
Ras
CaM
PKM
Shared Object_
Ajay_Bhalla_
2007_ReacDiff2_
[26]
PKC
MAPK
Ras
CaM
PKM
Shared Object_
Ajay_Bhalla_
2007_ReacDiff2_
[27]
PKC
MAPK
Ras
CaM
PKM
Shared Object_
Ajay_Bhalla_
2007_ReacDiff2_
[28]
PKC
MAPK
Ras
CaM
PKM
Shared Object_
Ajay_Bhalla_
2007_ReacDiff2_
[29]
PKC
MAPK
Ras
CaM
PKM
Shared Object_
Ajay_Bhalla_
2007_ReacDiff2_
[30]
PKC
MAPK
Ras
CaM
PKM
Shared Object_
Ajay_Bhalla_
2007_ReacDiff2_
[31]
PKC
MAPK
Ras
CaM
PKM
Shared Object_
Ajay_Bhalla_
2007_ReacDiff2_
[32]
PKC
MAPK
Ras
CaM
PKM
Shared Object_
Ajay_Bhalla_
2007_ReacDiff2_
[33]
PKC
MAPK
Ras
CaM
PKM
Shared Object_
Ajay_Bhalla_
2007_ReacDiff2_
[34]
PKC
MAPK
Ras
CaM
PKM
Shared Object_
Ajay_Bhalla_
2007_ReacDiff2_
[35]
PKC
MAPK
Ras
CaM
PKM
Shared Object_
Ajay_Bhalla_
2007_ReacDiff2_
[36]
PKC
MAPK
Ras
CaM
PKM
Shared Object_
Ajay_Bhalla_
2007_ReacDiff2_
[37]
PKC
MAPK
Ras
CaM
PKM
Shared Object_
Ajay_Bhalla_
2007_ReacDiff2_
[38]
PKC
MAPK
Ras
CaM
PKM

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Reaction List for pathway Ras (Pathway Number 753)

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 reactions is not considered.
  Name KfKbKdtauSubstrateProduct
1 CaM-bind-GEF199.995
(uM^-1 s^-1)
1
(s^-1)
Kd(bf) = 0.005(uM)-inact-GEF
CaM-Ca4
CaM-GEF
  We have no numbers for this. It is probably between the two extremes represented by the CaMKII phosph states, and I have used guesses based on this. kf=1e-4 kb=1 The reaction is based on Farnsworth et al Nature 376 524-527 1995
2 dephosph-GAP0.1
(s^-1)
0
(s^-1)
--GAP*
GAP
  Assume a reasonably good rate for dephosphorylating it, 1/sec
3 dephosph-GEF1
(s^-1)
0
(s^-1)
--GEF*
inact-GEF
4 Ras-intrinsic-GT
Pase
0.0001
(s^-1)
0
(s^-1)
--GTP-Ras
GDP-Ras
  This is extremely slow (1e-4), but it is significant as so little GAP actually gets complexed with it that the total GTP turnover rises only by 2-3 X (see Gibbs et al, JBC 265(33) 20437-20422) and Eccleston et al JBC 268(36) 27012-27019 kf = 1e-4


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