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Conradie, Bruggeman, Ciliberto, Csikasz-Nagy, Novak, Westerhoff, Snoep,
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Restriction point control of the mammalian cell cycle via the cyclin E/Cdk2:p27 complex
Info
Model Mathematics
Component based math viewer is available
Component: environment
Component: A
v_42
=
eps
K1
CYCB
J1
2
CYCB
J1
2
+
1
+
K1a
v_19
=
V_2
CYCB
v_21
=
V_4
Cdh1
J4
+
Cdh1
v_20
=
K3a
+
K3
Cdc20
1
-
Cdh1
J3
-
Cdh1
+
1
V_2
=
K2aa
Cdc20
+
K2a
1
-
Cdh1
+
K2
Cdh1
V_4
=
K4
GA
CYCA
+
GB
CYCB
+
GE
CYCE
d
d
time
Cdh1
=
v_20
-
v_21
d
d
time
CYCB
=
v_42
-
v_19
Component: B
v_39
=
eps
K9
DRG
v_41
=
eps
k17
DRG
J17
2
DRG
J17
2
+
1
+
k17a
ERG
v_2
=
k18
DRG
v_34
=
eps
k15
DRG
J15
2
+
1
v_1
=
k16
ERG
d
d
time
DRG
=
v_41
-
v_2
d
d
time
ERG
=
v_34
-
v_1
Component: C
PP1A
=
PP1T
K21
FE
CYCA
+
CYCE
+
FB
CYCB
+
1
v_29
=
E2FRb
K20
CYCDT
LD
+
LA
CYCA
+
LB
CYCB
+
LE
CYCE
v_30
=
PE2FRb
K20
CYCDT
LD
+
LA
CYCA
+
LB
CYCB
+
LE
CYCE
v_43
=
Rb
K20
CYCDT
LD
+
LA
CYCA
+
LB
CYCB
+
LE
CYCE
v_44
=
PPRb
K19a
PP1T
-
PP1A
+
K19
PP1A
v_45
=
E2FRb
K26R
v_46
=
E2F
K23a
+
K23
CYCA
+
CYCB
v_47
=
PE2F
K22
v_48
=
E2F
Rb
K26
v_49
=
PE2FRb
K26R
v_50
=
Rb
PE2F
K26
v_51
=
PE2FRb
K22
v_52
=
E2FRb
K23a
+
K23
CYCA
+
CYCB
d
d
time
PPRb
=
v_29
+
v_30
+
v_43
-
v_44
d
d
time
E2F
=
v_29
+
v_45
+
v_47
-
v_46
-
v_48
d
d
time
PE2F
=
v_30
+
v_49
+
v_46
-
v_47
-
v_50
d
d
time
Rb
=
v_44
+
v_45
+
v_49
-
v_48
-
v_50
-
v_43
d
d
time
E2FRb
=
v_51
+
v_48
-
v_52
-
v_29
-
v_45
d
d
time
PE2FRb
=
v_52
+
v_50
-
v_51
-
v_30
-
v_49
Component: D
V_6
=
K6a
+
K6
HA
CYCA
+
HB
CYCB
+
HE
CYCE
V_8
=
K8
YE
CYCA
+
CYCE
+
YB
CYCB
CYCET
+
J8
+
K8a
v_3
=
K10
CD
v_4
=
K10
CYCD
v_5
=
K25
p27
CYCE
v_6
=
K25
p27
CYCA
v_7
=
k24
p27
CYCD
v_8
=
k24r
CD
v_9
=
K30
Cdc20
CYCA
v_10
=
K30
Cdc20
CA
v_11
=
K25R
CE
v_12
=
K25R
CA
v_13
=
V_8
CE
v_14
=
V_8
CYCE
v_15
=
V_6
p27
v_16
=
V_6
CE
v_17
=
V_6
CD
v_18
=
V_6
CA
v_36
=
eps
K29
E2F
MASS
v_38
=
eps
K7a
+
K7
E2F
v_40
=
eps
K5
d
d
time
CA
=
v_6
-
v_12
-
v_18
-
v_10
d
d
time
CD
=
v_7
-
v_8
-
v_17
-
v_3
d
d
time
CE
=
v_5
-
v_11
-
v_13
-
v_16
d
d
time
CYCA
=
v_36
-
v_9
-
v_6
+
v_12
+
v_18
d
d
time
CYCD
=
v_39
+
v_17
+
v_8
-
v_7
-
v_4
d
d
time
CYCE
=
v_38
-
v_14
-
v_5
+
v_11
+
v_16
d
d
time
p27
=
v_40
+
v_3
+
v_8
-
v_15
-
v_5
-
v_6
-
v_7
+
v_11
+
v_12
+
v_13
+
v_10
Component: E
v_31
=
K27
MASS
r31switch
v_32
=
K28
GM
v_33
=
eps
MU
GM
d
d
time
GM
=
v_31
-
v_32
d
d
time
MASS
=
v_33
Component: F
v_22
=
K34
PPX
v_23
=
K31
CYCB
1
-
IEP
J31
-
IEP
+
1
v_24
=
K32
PPX
IEP
J32
+
IEP
v_25
=
K12
Cdc20T
v_26
=
K13
IEP
Cdc20T
-
Cdc20
J13
-
Cdc20
+
Cdc20T
v_27
=
K14
Cdc20
J14
+
Cdc20
v_28
=
K12
Cdc20
v_35
=
eps
K11a
+
K11
CYCB
v_37
=
eps
K33
d
d
time
Cdc20T
=
v_35
-
v_25
d
d
time
IEP
=
v_23
-
v_24
d
d
time
PPX
=
v_37
-
v_22
Source
Derived from workspace
Conradie, Bruggeman, Ciliberto, Csikasz-Nagy, Novak, Westerhoff and Snoep, 2010
at changeset
46c317f0a362
.
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This work is licensed under a
Creative Commons Attribution 3.0 Unported License
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Restriction point control of the mammalian cell cycle via the cyclin E/Cdk2:p27 complex