The amount of enzymes in the body does not significantly decrease while sleeping; rather, they remain relatively constant. Enzymes are continuously produced and utilized for various metabolic processes, including digestion and cellular repair. Sleep can influence enzyme activity and expression, but the overall quantity of enzymes present in the body remains stable. Thus, while the metabolic activity may vary during sleep, the total amount of enzymes does not dramatically change.
If an enzyme produces too much of one substance in the organism, that substance may act as an inhibitor for the enzyme at the beginning of the pathway that produces it, causing production of the substance to slow down or stop when there is sufficient amount.
That depends on the signals given to the cell. If a cell receives a positive feedback, it makes more. If there are too much, a negative feedback is given to lower the amount. This is a way of controlling the enzyme balance in your body.
Enzymes speed up chemical reactions by lowering the activation energy. The activation energy is the amount of energy needed to start a reaction and if this is lowered the reaction can occur more rapidly.
Without an enzyme, the activation energy needed to start a reaction is much greater. An enzyme is a catalyst, which decreases the amount of activation energy needed to start a reaction. By doing so, it decreases the amount of time the chemical reaction takes place.
The substrate fits into the enzyme, much the way a key fits in a lock. Sometimes there are other "modulators" that also fit in the enzyme.
When you are sleeping, your body's energy consumption decreases to about 15-20% lower than when you are awake. The energy is used for essential functions such as maintaining body temperature, breathing, and repairing tissues. The exact amount of energy used can vary depending on factors such as age, weight, and metabolism.
Ceruloplasmin is an enzyme that is important in the human body. It is synthesized by the liver. It carries much copper and has a major role in iron metabolism.
If an enzyme produces too much of one substance in the organism, that substance may act as an inhibitor for the enzyme at the beginning of the pathway that produces it, causing production of the substance to slow down or stop when there is sufficient amount.
George Pullman invented the Pullman sleeping car, in 1857. The Pullman sleeping car was much more comfortable than the sleeping cars used in the past. A Pullman sleeping car was attached to the funeral train carrying Abraham Lincoln's body.
They yawn for the same reason that you do, too much carbon dioxide in the body. Yawning is the body's was of releasing the excess gases.
The amount of amylase enzyme needed for the experiment should be determined based on the specific protocol or instructions provided. It is important to follow the guidelines accurately to ensure the success of the experiment.
Between 45% and 75%. It depends on the amount of body fat in your body.
they don't we all have the same amount of water in our body
The optimal pH for enzymes varies depending on the specific enzyme. Each enzyme has a pH range at which it functions most efficiently. If the pH deviates too much from this optimal range, the enzyme's activity can be significantly reduced or denatured.
That depends on the signals given to the cell. If a cell receives a positive feedback, it makes more. If there are too much, a negative feedback is given to lower the amount. This is a way of controlling the enzyme balance in your body.
It depends on what enzyme and what chemical you're talking about.In general, enzymes catalyze a certain reaction for a certain molecule or class of molecules. They do pretty much bupkis to any molecules outside that class.
You can not find a set amount of electrical resistance because your body is made of many different materials and the amount varies with time ex: your body may, hypothetically, conduct more current if it is better hydrated