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  2. Pasteur effect - Wikipedia

    en.wikipedia.org/wiki/Pasteur_effect

    First, glucose metabolism is faster through ethanol fermentation because it involves fewer enzymes and limits all reactions to the cytoplasm. Second, ethanol has bactericidal activity by causing damage to the cell membrane and protein denaturing , allowing yeast fungus to outcompete environmental bacteria for resources. [ 6 ]

  3. Catabolite repression - Wikipedia

    en.wikipedia.org/wiki/Catabolite_repression

    Absence of glucose will "turn off" catabolite repression. When glucose levels are low, the phosphorylated form of EIIA accumulates and consequently activates the enzyme adenylyl cyclase, which will produce high levels of cAMP. cAMP binds to catabolite activator protein (CAP) and together they will bind to a promoter sequence on the lac operon ...

  4. EPSP synthase - Wikipedia

    en.wikipedia.org/wiki/EPSP_synthase

    EPSP synthase is the biological target for the herbicide glyphosate. [13] Glyphosate is a competitive inhibitor of EPSP synthase, acting as a transition state analog that binds more tightly to the EPSPS-S3P complex than PEP and inhibits the shikimate pathway. This binding leads to inhibition of the enzyme's catalysis and shuts down the pathway.

  5. Pentose phosphate pathway - Wikipedia

    en.wikipedia.org/wiki/Pentose_phosphate_pathway

    One of the uses of NADPH in the cell is to prevent oxidative stress. It reduces glutathione via glutathione reductase, which converts reactive H 2 O 2 into H 2 O by glutathione peroxidase. If absent, the H 2 O 2 would be converted to hydroxyl free radicals by Fenton chemistry, which can attack the cell. Erythrocytes, for example, generate a ...

  6. Glucose 1-phosphate - Wikipedia

    en.wikipedia.org/wiki/Glucose_1-phosphate

    [1] [2] [3] One reason that cells form glucose 1-phosphate instead of glucose during glycogen breakdown is that the very polar phosphorylated glucose cannot leave the cell membrane and so is marked for intracellular catabolism. Phosphoglucomutase-1 deficiency is known as glycogen storage disease type 14 (GSD XIV). [4]

  7. Xylose isomerase - Wikipedia

    en.wikipedia.org/wiki/Xylose_isomerase

    The most widely used application of this enzyme is in the conversion of glucose to fructose to produce high fructose corn syrup (HFCS). [8]: 27 There are three general steps in producing HFCS from starch: [9]: 808–813 enzymatic degradation of the starch using α-amylase. Also known as liquification.

  8. Glucokinase - Wikipedia

    en.wikipedia.org/wiki/Glucokinase

    Beta cells release insulin in response to rising levels of glucose. Insulin enables many types of cells to import and use glucose, and signals the liver to synthesize glycogen. Alpha cells produce less glucagon in response to rising glucose levels, and more glucagon if blood glucose is low. Glucagon serves as a signal to the liver to break down ...

  9. Glucose transporter - Wikipedia

    en.wikipedia.org/wiki/Glucose_transporter

    Most non-autotrophic cells are unable to produce free glucose because they lack expression of glucose-6-phosphatase and, thus, are involved only in glucose uptake and catabolism. Usually produced only in hepatocytes , in fasting conditions, other tissues such as the intestines, muscles, brain, and kidneys are able to produce glucose following ...