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C3-Carboxylating and C4-Decarboxylating Flux in vivo

DNA technology might improve lysine yield in C. glutamicum. Therefore, it was of prime interest to quantitate the in vivo flux through each of the enzyme reactions potentially involved in the C3-C4 interconversion in C. glutamicum in order to decide which enzyme is responsible. For this purpose, a completely new labelling strategy based on isotopomer analysis was developed. [Pg.15]

Detailed Flux Information from Isotopomer Analysis [Pg.15]

Strain Cultivation Product Net ana-plerosis C3-carboxyl-ating flux C4-decar-boxylating flux Ref. [Pg.16]


See other pages where C3-Carboxylating and C4-Decarboxylating Flux in vivo is mentioned: [Pg.14]   


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And decarboxylation

And decarboxylative

Carboxylates decarboxylation

Carboxylic decarboxylation

In decarboxylation

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