Team:LCG-UNAM-Mexico/Notebook/2008-October
From 2008.igem.org
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- | <td class="bodyText"><p>-</p> | + | <td class="bodyText"><p><strong id="j4px2"><br /> |
+ | </strong> | ||
+ | <p align="center"> <strong>Hill Kinetics</strong> </p> | ||
+ | <p> <strong>REFERENCE: <em>Segel; Enzyme kinetics: Behaviour and Analysis of rapid equilibrium and Steady-state Enzyme systems</em>.</strong> </p> | ||
+ | <p> <strong>Multiple Inhibition Analysis</strong> </p> | ||
+ | <p> </p> | ||
+ | <p> </p> | ||
+ | <div id="mjrt"><img src="http://docs.google.com/File?id=dntmktb_107gd4vzj6p_b" /></div> | ||
+ | <br /> | ||
+ | </p> | ||
+ | <p>v = kp[ES] -> v/[Et]=kp[ES]/([E]+[IE]+[EI]+[IEI]+[ES]) </p> | ||
+ | <p> Ks=[E][S]/[ES] -> [ES]=[E][S]/Ks <br /> | ||
+ | Ki=[I][E]/[IE] -> [IE]=[I][E]/Ki <br /> | ||
+ | Ki=[EI][I]/[IEI] -> [IEI]=[EI][I]/Ki=[I]2[E]/Ki2 </p> | ||
+ | <p> v/[Et]=([E][S]/Ks)kp/([E]+([I][E]/Ki)+([E][I]/Ki)+([I]2[E]/Ki2)+([E][S]/Ks)) <br /> | ||
+ | v/[Et]=([S]/Ks)kp/(1+2([I]/Ki)+([I]2/Ki2)+([S]/Ks)) <br /> | ||
+ | v=([S]/Ks)kp[Et]/(1+2([I]/Ki)+([I]2/Ki2)+([S]/Ks))=([S]/Ks)Vmax/(1+2([I]/Ki)+([I]2/Ki2)+([S]/Ks)) </p> | ||
+ | <p> <strong>…with cooperativity <br /> | ||
+ | </strong>v=([S]/Ks)Vmax/(1+2([I]/Ki)+([I]2/aKi2)+([S]/Ks)) <br /> | ||
+ | <em>* a factor</em> </p> | ||
+ | <p> It can be written in Hill's terms (if the cooperativity is strong). </p> | ||
+ | <p> <strong>System: </strong> cI repression</p> | ||
+ | <p> <strong>Inhibitor:</strong> cI:cI (I) <br /> | ||
+ | <strong>“Enzyme”: </strong>ρ (ρ) <br /> | ||
+ | <strong>Substrate: </strong>- <br /> | ||
+ | <strong>Product: </strong>RcnA (P) </p> | ||
+ | <p> <strong>Union sites: </strong>OR2 & OR1 <br /> | ||
+ | I in OR1 -> ρI <br /> | ||
+ | I in OR2 -> Iρ </p> | ||
+ | <p> </p> | ||
+ | <div id="ce:j"><img src="http://docs.google.com/File?id=dntmktb_108263t8wmw_b" /></div> | ||
+ | </p> | ||
+ | <p> </p> | ||
+ | <p> K5-1=[I][ρ]/[ρI] <br /> | ||
+ | K5-2=[I][ρ]/[Iρ] <br /> | ||
+ | a & b cooperativity factor</p> | ||
+ | <p> * K5=[ρ][I]2/[IρI] </p> | ||
+ | <p> K5=K5-1·K5-2·a </p> | ||
+ | <p> ΔGº=ΔGº1+ ΔGº2+ ΔGº12 </p> | ||
+ | <p> 1/K5=exp(-ΔGº/RT)=exp(ΔGº1/RT)+ exp(ΔGº2/RT)+ exp(ΔGº12/RT) </p> | ||
+ | <p> ρI -> ΔGº1=-11.7 kcal/mol <br /> | ||
+ | Iρ -> ΔGº2=-10.1 kcal/mol <br /> | ||
+ | Coop. -> ΔGº12=-2 kcal/mol <br /> | ||
+ | ΔGº =-23.8 kcal/mol </p> | ||
+ | <p> v=k6·ρ <br /> | ||
+ | v/[ρt]=kp[ρ]/([ρ]+[Iρ]+[ρI]+[IρI]) <br /> | ||
+ | v/[ρt]=[ρ]kp/([ρ]+([ρ][I]/K5-1)+([I][ρ]/K5-2)+([I]2[ρ]/K52)) <br /> | ||
+ | v/[ρt]= kp/(1+([I]/K5-1)+([I]/K5-2)+([I]2/K5)) <br /> | ||
+ | v= kp[ρt]/(1+([I]/K5-1)+([I]/K5-2)+([I]2/K5)) </p> | ||
+ | <p> <strong>NOTE:</strong> We are ommiting the fact that cI:cI will be "kidnapped" by the promotor. This doesn't seem important since we only have 10 molecules of the promoter per cell, comparing with 150 basal molecules (without the AHL signal) of the dimer.</p> | ||
+ | <p> </p> | ||
</td> | </td> | ||
</tr> | </tr> |
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