Login   |   Regist

Biotechnol Bioeng. 2004 May;86(3):251-60. Metabolic pathway analysis of yeast strengthens the bridge between transcriptomics and metabolic networks. Cakir T, Kirdar B, Ulgen KO.



Click on the "GO TO" button to display the flux map.

Font-size: Color: Global color
ATP production rate Maximum 182.75 -R01786-R04779+2.5*R01061+R01512+R00200+2.5*R00209
+2.5*R00267+2.5*R08549-R00405+1.5*R00402+2.5*R00342
+2.5*R00214
ATP production rate Minium 144.3 -R01786-R04779+2.5*R01061+R01512+R00200+2.5*R00209
+2.5*R08549-R00405+1.5*R00402+2.5*R00342
NADPH production rate Maximum 29.74 R02736+R01528+R00267+R00214
NADPH production rate Minium 14.36 R02736+R01528
ATP production rate Maximum N/A -R01786-R04779+2.5*R01061+R01512+R00200+2.5*R00209
+2.5*R00267+2.5*R08549-R00405+1.5*R00402+2.5*R00342
+2.5*R00214
ATP production rate Minium N/A -R01786-R04779+2.5*R01061+R01512+R00200+2.5*R00209
+2.5*R08549-R00405+1.5*R00402+2.5*R00342
NADPH production rate Maximum 16 R02736+R01528+R00267+R00214
NADPH production rate Minium 7.74 R02736+R01528
Growth Condition
Strains Saccharomyces cerevisia
Genotype
Culture medium
Carbon source D-Glucose
Growth rate
Case-specific description Control-effective flux distribution for glucose growth.
Growth Condition
Strains Saccharomyces cerevisia
Genotype
Culture medium
Carbon source Ethanol
Growth rate
Case-specific description Control-effective flux distribution for ethanol growth.
Specific Rate (mmol g-1 h-1)
Specific Rate (mmol g-1 h-1)
Source