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The effects of bile salts on the kinetic properties of enzymes used in
The effects of bile salts on the kinetic properties of enzymes used in

... then centrifuged for 20 min at lOOOg and stored at -20°C. Prior to assay the homogenate was then centrifuged at lOOOg for 20 min and the supernatant used to determine enzyme activity in the presence of the bile salts. The enzymes were determined by standard biochemical methods [3,4]. Kinetic paramet ...
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... 5. A scientist observes that, when the pH of the environment surrounding an enzyme is changed, the rate the enzyme catalyzes a reaction greatly decreases. Which statement best describes how a change in pH can affect an enzyme? A. A pH change can cause the enzyme to change its shape. B. A pH change c ...
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... functions. Other proteins are secreted. If proteins end up in the wrong place or don’t get to the right place this can lead to abnormal cell function and/or serious diseases. One means by which the location of proteins is determined is through the process of protein targeting. The mis-sorting of rho ...
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... • Other substances when added to water give off OHand create alkaline or basic conditions (H+ < OH-). These substances are called bases or alkalis. • Organisms cannot survive in acidic or basic conditions because their chemicals are broken apart ...
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... activation energy of the chemical reaction. Activation energy is the amount of energy needed before a chemical reaction can start. By lowering the activation energy of chemical reactions, enzymes help cells build and break down complex molecules like starches and proteins. Much like the other biomol ...
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Enzyme



Enzymes /ˈɛnzaɪmz/ are macromolecular biological catalysts. Enzymes accelerate, or catalyze, chemical reactions. The molecules at the beginning of the process are called substrates and the enzyme converts these into different molecules, called products. Almost all metabolic processes in the cell need enzymes in order to occur at rates fast enough to sustain life. The set of enzymes made in a cell determines which metabolic pathways occur in that cell. The study of enzymes is called enzymology.Enzymes are known to catalyze more than 5,000 biochemical reaction types. Most enzymes are proteins, although a few are catalytic RNA molecules. Enzymes' specificity comes from their unique three-dimensional structures.Like all catalysts, enzymes increase the rate of a reaction by lowering its activation energy. Some enzymes can make their conversion of substrate to product occur many millions of times faster. An extreme example is orotidine 5'-phosphate decarboxylase, which allows a reaction that would otherwise take millions of years to occur in milliseconds. Chemically, enzymes are like any catalyst and are not consumed in chemical reactions, nor do they alter the equilibrium of a reaction. Enzymes differ from most other catalysts by being much more specific. Enzyme activity can be affected by other molecules: inhibitors are molecules that decrease enzyme activity, and activators are molecules that increase activity. Many drugs and poisons are enzyme inhibitors. An enzyme's activity decreases markedly outside its optimal temperature and pH.Some enzymes are used commercially, for example, in the synthesis of antibiotics. Some household products use enzymes to speed up chemical reactions: enzymes in biological washing powders break down protein, starch or fat stains on clothes, and enzymes in meat tenderizer break down proteins into smaller molecules, making the meat easier to chew.
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