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Molecule Parameter List for P_RNAP

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
P_RNAP participated asMoleculeSum total ofEnzymeSubstrate of an enzymeProduct of an enzymeSubstrate in ReactionProduct in Reaction
No. of occurrences1000011

Accession and Pathway Details
Accession NameAccession No.Accession TypePathway Link
Kierzek_LacZ29Pathway
LacZ 
An approximation to the Kierzek AM. et al. J Biol Chem. (2001) 276(11):8165-72 model of LacZ gene expression in E. coli. They use stochastic simulation and model cell growth. Despite these discrepancies, the continuous fixed size model is within a factor of 3 of their results. Parameter values are identical.

P_RNAP acting as a Molecule in  
Kierzek_LacZ Network
NameAccession NamePathway NameInitial Conc.
(uM)
Volume
(fL)
Buffered
P_RNAPKierzek_LacZ
Accession No. : 29
LacZ
Pathway No. : 141
00.99997No

P_RNAP acting as a Substrate in a reaction in  
Kierzek_LacZ 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
IsomerizationKierzek_LacZ
Accession No. : 29
LacZ
Pathway No. : 141
1
(s^-1)
0
(s^-1)
--Substrate
P_RNAP

Product
TrRNAP
Equation 3 from Kierzek et al. Isomerization of closed binary complex to open binary complex.

P_RNAP acting as a Product in a reaction in  
Kierzek_LacZ 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
RNAPol_bindingKierzek_LacZ
Accession No. : 29
LacZ
Pathway No. : 141
99.9927
(uM^-1 s^-1)
10
(s^-1)
Kd(bf) = 0.1(uM)-Substrate
P
RNAP

Product
P_RNAP
Equations 1 and 2 from Kierzek et al. Reversible RNA polymerase binding.



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