Regulation of carbon assimilation

C - Chemistry – Metallurgy – 12 – N

Patent

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Details

C12N 15/60 (2006.01) C12N 9/88 (2006.01) C12P 1/00 (2006.01) C12P 7/40 (2006.01) C12P 13/04 (2006.01) C12P 13/08 (2006.01)

Patent

CA 2377488

The present invention provides a method of increasing the productivity of a microorganism by improving the assimilation of carbon dioxide. Specifically, the invention provides a polypeptide having phosphoenolpyruvate carboxylase activity which does not require acetyl coenzyme A for activation and is desensitized to feedback inhibition by aspartic acid, and to genes coding for this polypeptide. A gene encoding a PEP carboxylase that is not regulated by acetyl-CoA or aspartic acid can improve carbon flow from the three carbon intermediate PEP to the four carbon intermediate OAA, contribute to compounds derived from OAA, and increase amino acid biosynthesis. The invention further provides recombinant DNA molecules containing these genes, bacteria transformed with these genes, and a method of producing amino acids using the transformed bacteria.

La présente invention concerne un procédé permettant d'augmenter le rendement d'un micro-organisme par l'amélioration de l'assimilation du gaz carbonique. Plus précisément, cette invention concerne un polypeptide ayant une activité carboxylase phosphoénolpyruvate qui n'exige pas de coenzyme A acétyle pour son activation et qui est désensibilisé à la rétroinhibition par l'acide aspartique, et aux gènes codant pour ce polypeptide. Un gène codant pour une carboxylase PEP qui n'est pas régulé par acetyl-CoA ou par acide aspartique peut améliorer le flux de carbone provenant des trois intermédiaire de carbone de PEP à destination des quatre intermédiaires de carbone de OAA, former des composés dérivés de OAA, et accélérer la biosynthèse des acides aminés. Cette invention concerne aussi des molécules d'ADN de recombinaison contenant ces gènes, et une technique de production d'acides aminés utilisant cette bactérie transformée.

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