The sack of enzymes that digests peroxide is called a peroxisome. Peroxisomes contain enzymes like catalase that break down hydrogen peroxide into water and oxygen, preventing damage to the cell from reactive oxygen species.
catalase enzymes. Catalase enzymes help to break down hydrogen peroxide into water and oxygen molecules, preventing the accumulation of toxic levels of hydrogen peroxide in cells.
Catalases are enzymes that catalyse the conversion of hydrogen peroxide to water.
Peroxisomes contain enzymes called catalase that degrade hydrogen peroxide into water and oxygen gas. This process helps protect the cell from the toxic effects of hydrogen peroxide.
Enzymes are found in the liver and as you know enzymes are hightly specific biological catalysts. One of the enzymes that is found in liver is the enzyme called a peroxidase enzyme, whose job it is to break down any hydrogen peroxide that exists in the body. It is important to note the dependance on concentration of the enzyme, the PH of the system(as enzymes only like to work ay body ph). The peroxidase enzymes generally break up molecules in the form ROOR into ROH and R'OH where the chain length of R varies.
Mixing peroxide with enzymes can potentially increase the rate of chemical reactions. Peroxide can act as a catalyst to break down substrates that the enzyme may normally not be able to react with efficiently. However, the specific outcome would depend on the type of enzyme and peroxide being used.
Examples of enzyme catalysts include amylase (digests carbohydrates), protease (digests proteins), and lipase (digests fats). Each of these enzymes helps to speed up specific chemical reactions in the body.
Enzymes reactions.
A protease is an enzyme that digests protein. These enzymes are also known as peptidases.
Enzymes in the liver.
A protease enzyme digests proteins. It non-specifically degrades proteins
It is decomposed into water and oxygen.
catalase enzymes. Catalase enzymes help to break down hydrogen peroxide into water and oxygen molecules, preventing the accumulation of toxic levels of hydrogen peroxide in cells.
Catalases are enzymes that catalyse the conversion of hydrogen peroxide to water.
Peroxisomes contain enzymes called catalase that degrade hydrogen peroxide into water and oxygen gas. This process helps protect the cell from the toxic effects of hydrogen peroxide.
Enzymes are found in the liver and as you know enzymes are hightly specific biological catalysts. One of the enzymes that is found in liver is the enzyme called a peroxidase enzyme, whose job it is to break down any hydrogen peroxide that exists in the body. It is important to note the dependance on concentration of the enzyme, the PH of the system(as enzymes only like to work ay body ph). The peroxidase enzymes generally break up molecules in the form ROOR into ROH and R'OH where the chain length of R varies.
Mixing peroxide with enzymes can potentially increase the rate of chemical reactions. Peroxide can act as a catalyst to break down substrates that the enzyme may normally not be able to react with efficiently. However, the specific outcome would depend on the type of enzyme and peroxide being used.
Hydrogen peroxide degradation in a cell is primarily carried out by enzymes such as catalase and peroxidase. These enzymes catalyze the breakdown of hydrogen peroxide into water and oxygen, preventing oxidative damage to the cell. Regulatory mechanisms also play a role in controlling the levels of hydrogen peroxide to maintain cellular homeostasis.