Abstract:
PROBLEM TO BE SOLVED: To provide SMP nucleic acid and protein molecules, which relate to metabolism of carbon compounds such as sugars and generation of energy molecules, in a process (such as oxidative phosphorylation) of Corynebacterium glutamicum. SOLUTION: Isolated nucleic acid molecules of a specific sequence, or a complement thereof, which nucleic acid molecules are selected from a sequence group relating to metabolism of carbon compounds such as sugars and generation of energy molecules, in a process of Corynebacterium glutamicum, are provided, and cells containing the nucleic acid molecules and of genus Corynebacterium or genus Brevibacterium are provided. A method for producing fine chemicals such as an amino acid by using the cells, and a method for detecting existence and activity of Corynebacterium diphtheriae is provided. COPYRIGHT: (C)2008,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide a new bacterial nucleic acid molecule having various applications. SOLUTION: Isolated nucleic acid molecules, designated MP (melabolic pathway) nucleic acid molecules, which encode new MP proteins derived from Corynebacterium glutamicum, are described. Antisense nucleic acid molecules, recombinant expression vectors containing MP nucleic acid molecules, and host cells into which the expression vectors are introduced, are also provided. Further, isolated MP proteins, mutated MP proteins, fusion proteins, antigenic peptides and methods for improving production of a desired compound from C. glutamicum based on genetic engineering of MP genes in the organism, are provided. COPYRIGHT: (C)2008,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide a stress, resistance and tolerance protein encoding Corynebacterium glutamicum gene used for the discrimination of microorganism for the production of fine chemicals, control of the production of fine chemicals by bacteria, classification or discrimination of bacteria, use as a reference point for the preparation of a genom map and as a label for genetic transformation. SOLUTION: The invention provides an isolated nucleic acid molecule or a designated SRT nucleic acid molecule encoding a new SRT protein derived from Corynebacterium glutamicum. The invention also provides its antisense nucleic acid molecule, a recombinant expression vector containing SRT nucleic acid molecule, and host cell into which the expression vector is to be introduced. The invention still further provides isolated SRT protein, mutated SRT protein, fusion protein, antigenic peptide and method for the improvement of the production of a desired compound from C. glutamicum based on genetic engineering of SRT genes of this organism. COPYRIGHT: (C)2007,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide a novel nucleic acid molecule derived from Corynebacterium glutamicum. SOLUTION: Isolated nucleic acid molecules encoding novel PTS proteins (phosphoenolpyruvate: sugar phosphotransferase) derived from Corynebacterium glutamicum are described. The invention also provides antisense nucleic acid molecules, recombinant expression vectors containing PTS nucleic acid molecules, and host cells into which the expression vectors have been introduced. The invention still further provides isolated PTS proteins, mutated PTS proteins, fusion proteins, antigenic peptides and methods for the improvement of production of a desired compound from C. glutamicum based on genetic engineering of the PTS genes. COPYRIGHT: (C)2007,JPO&INPIT
Abstract:
The invention relates to novel nucleic acid molecules, the use thereof in the construction of bio-engineering improved microorganisms and methods for the production of fine chemicals, especially amino acids with the aid of said bio-engineered improved microorganisms.
Abstract:
Isolated nucleic acid molecules, designated PTS nucleic acid molecules, which encode novel PTS proteins from Corynebacterium glutamicum are described. The invention also provides antisense nucleic acid molecules, recombinant expression vectors containing PTS nucleic acid molecules, and host cells into which the expression vectors have been introduced. The invention still further provides isolated PTS proteins, mutated PTS proteins, fusion proteins, antigenic peptides and methods for the improvement of production of a desired compound from C. glutamicum based on genetic engineering of PTS genes in this organism.
Abstract:
The invention concerns novel nucleic acid molecules, the use of said molecules for producing by recombination genetically improved micro-organisms, and a method for preparing fine chemical products, in particular amino acids, using said genetically improved micro-organisms.
Abstract:
Isolated nucleic acid molecules, designated SMP nucleic acid molecules, which encode novel SMP proteins from Corynebacterium glutamicum are described. The invention also provides antisense nucleic acid molecules, recombinant expression vectors containing SMP nucleic acid molecules, and host cells into which the expression vectors have been introduced. The invention still further provides isolated SMP proteins, mutated SMP proteins, fusion proteins, antigenic peptides and methods for the improvement of production of a desired compound from C. glutamicum based on genetic engineering of SMP genes in this organism.
Abstract:
The invention relates to mutant nucleic acids and proteins from the metabolic pathway of fine chemicals, methods for the production of genetically modified production organisms, methods for the production of fine chemicals by cultivating said genetically modified organisms, and said genetically modified organisms.
Abstract:
Isolated nucleic acid molecules, designated HA nucleic acid molecules, which encode novel HA proteins from Corynebacterium glutamicum are described. The invention also provides antisense nucleic acid molecules, recombinant expression vectors containing HA nucleic acid molecules, and host cells into which the expression vectors have been introduced. The invention still further provides isolated HA proteins, mutated HA proteins, fusion proteins, antigenic peptides and methods for the improvement of production of a desired compound from C. glutamicum based on genetic engineering of HA genes in this organism.