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Accession Type:
Network
Osc_Ca_
IP3metabolism
MIPP
CaMKII
CaM
 Molecule
 Reaction
PKC
IP3-3K
Gq
PLCbeta
134_dephos
145_dephos
IP4-system
IHP-system
1345_dephos
CaRegulation
Othmer-Tang-mode
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Reaction List for pathway CaM (Pathway Number 160)

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-Ca3-bind-Cakf
(uM^-1 s^-1)
10
(s^-1)
Kd(bf) = 21.5054(uM)-CaM-Ca3
Ca
CaM-Ca4
  Use K3 = 21.5 uM here from Stemmer and Klee table 3. Stemmer and Klee 1994 Biochem 33:6859-6866 kb/kf =21.5 * 6e5 so kf = 7.75e-7, kb = 10
2 CaM-TR2-bind-Cakf
(uM^-2 s^-1)
72
(s^-1)
Kd(af) = 1(uM)-CaM
Ca
Ca
CaM-TR2-Ca2
  We use the Martin et al 1985 Eur J Biochem 151(3):543-550 rates here, plus the Drabikowski and Brzeska 1982 JBC 257(19):11584-11590 binding consts. All are scaled by 3X to cell temperature. kf = 2e-10 kb = 72 Stemmer & Klee 1994 Biochem 33:6859-6866 have values of : K1=.9, K2=1.1. Assume 1.0uM for both
3 CaM-TR2-Ca2-bind
-Ca
kf
(uM^-1 s^-1)
10
(s^-1)
Kd(bf) = 2.7778(uM)-CaM-TR2-Ca2
Ca
CaM-Ca3
  Stemmer and Klee 1994 Biochem 33:6859-6866 K3 = 21.5, K4 = 2.8. Assuming that the K4 step happens first, we get kb/kf = 2.8 uM = 1.68e6 so kf =6e-6 assuming kb = 10


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