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  2. Lysosome - Wikipedia

    en.wikipedia.org/wiki/Lysosome

    In step two a lysosome with an active hydrolytic enzyme comes into the pictures as the food vacuole moves away from the plasma membrane. Step three consists of the lysosome fusing with the food vacuole and hydrolytic enzymes entering the food vacuole. In the final step, step four, hydrolytic enzymes digest the food particles. [5]

  3. Hydrolase - Wikipedia

    en.wikipedia.org/wiki/Hydrolase

    Hydrolase enzymes are important for the body because they have degradative properties. In lipids, lipases contribute to the breakdown of fats and lipoproteins and other larger molecules into smaller molecules like fatty acids and glycerol. Fatty acids and other small molecules are used for synthesis and as a source of energy. [1]

  4. Endomembrane system - Wikipedia

    en.wikipedia.org/wiki/Endomembrane_system

    Like lysosomes of animal cells, vacuoles have an acidic pH and contain hydrolytic enzymes. The pH of vacuoles enables them to perform homeostatic procedures in the cell. For example, when the pH in the cells environment drops, the H + ions surging into the cytosol can be transferred to a vacuole in order to keep the cytosol's pH constant. [33]

  5. Cell physiology - Wikipedia

    en.wikipedia.org/wiki/Cell_physiology

    Lysosomes are structures that use enzymes to break down substances through phagocytosis, a process that comprises endocytosis and exocytosis. In the mitochondria, metabolic processes such as cellular respiration occur. The cytoskeleton is made of fibers that support the structure of the cell and help the cell move. [2]

  6. Ribonuclease - Wikipedia

    en.wikipedia.org/wiki/Ribonuclease

    Ribonuclease (commonly abbreviated RNase) is a type of nuclease that catalyzes the degradation of RNA into smaller components. Ribonucleases can be divided into endoribonucleases and exoribonucleases, and comprise several sub-classes within the EC 2.7 (for the phosphorolytic enzymes) and 3.1 (for the hydrolytic enzymes) classes of enzymes.

  7. Alpha/beta hydrolase superfamily - Wikipedia

    en.wikipedia.org/wiki/Alpha/beta_hydrolase_super...

    The alpha/beta hydrolase superfamily is a superfamily of hydrolytic enzymes of widely differing phylogenetic origin and catalytic function that share a common fold. [1] The core of each enzyme is an alpha/beta-sheet (rather than a barrel), containing 8 beta strands connected by 6 alpha helices.

  8. Exoribonuclease - Wikipedia

    en.wikipedia.org/wiki/Exoribonuclease

    Hydrolytic exoribonucleases are classified under EC number 3.1 and phosphorolytic exoribonucleases under EC number 2.7.7. As the phosphorolytic enzymes use inorganic phosphate to cleave bonds they release nucleotide diphosphates , whereas the hydrolytic enzymes (which use water) release nucleotide monosphosphates .

  9. Glycoside hydrolase - Wikipedia

    en.wikipedia.org/wiki/Glycoside_hydrolase

    Glycoside hydrolases are found in essentially all domains of life. In prokaryotes, they are found both as intracellular and extracellular enzymes that are largely involved in nutrient acquisition. One of the important occurrences of glycoside hydrolases in bacteria is the enzyme beta-galactosidase (LacZ), which is involved in regulation of ...