Examples of using Krebs cycle in English and their translations into Vietnamese
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Important role in the krebs cycle.
Fumaric acid(fumarate) is a Krebs Cycle Intermediate and plays a vital role in energy production.
Hans Krebs elucidated the citric acid(Krebs) cycle in 1937.
The Crenarchaeota also use the reverse Krebs cycle while the Euryarchaeota also use the reductive acetyl-CoA pathway.
Is not having enough water in your body to run your Krebs cycles?
If there is an inadequate supply of malic acid in the body the Krebs cycle cannot function properly which leads to premature fatigue.
Calcium pyruvate is the compound responsible for initiating the Krebs cycle.
If there isn't an adequate supply of malic acid in the body, the Krebs cycle can't function properly, leading to fatigue.
Substrate-level phosphorylation:2 ATP from glycolysis+ 2 ATP(directly GTP) from Krebs cycle.
The Krebs cycle creates ATP energy coins for every activity in the body, which we have all learned in the curriculum.
To fully oxidize the equivalent of one glucosemolecule two acetyl-CoA must be metabolized by the Krebs cycle.
It has been shown to aid in the recycling of lactate andpyruvate within the Krebs Cycle, supplying instant and sustained energy output.
Activating enzymes involved the Krebs cycle and oxidative phosphorylation, along with increases detoxing of the body(glutathione-dependant).
Acetyl-CoA is extremely important because this is the input to the Krebs cycle that occurs in the cells.
The citric acid cycle or Krebs cycle isn't the only set of chemical reactions cells could use to release chemical energy, however, it is the most efficient.
Pyruvate is also converted to oxaloacetate by an anaplerotic reaction,which replenishes Krebs cycle intermediates;
Essentially, malic acid(or malate) helps stimulate the Krebs cycle, which is the natural process of turning nutrients into energy for use.
If you use the Ketogenic diet, after converting fatty acids into acetyl-CoA,the liver can not take it into the Krebs cycle immediately.
Also, the citric acid in lemons is an important part of the Krebs cycle, the means by which the body converts food into energy, and make the process more efficient.
The basis of this belief is thefact that phosphate is required for the energy-producing Krebs cycle central to aerobic metabolism.
Threonine can be converted to pyruvate and use in the Krebs cycle, but it's more common role is in building proteins and acting as a antioxidant stabilizer.
Mitochondrial matrix calcium levels can reach the tens of micromolar levels, which is necessary for the activation of isocitrate dehydrogenase,one of the key regulatory enzymes of the Krebs cycle.[98].
Acetyl-CoA is alsocreated during the second stage of cellular respiration, the Krebs Cycle, by the action of pyruvate dehydrogenase on pyruvic acid.
In plants, algae and cyanobacteria, sugars are produced by a subsequent sequence of light-independent reactions called the Calvin cycle, but some bacteria use different mechanisms,such as the reverse Krebs cycle.
Fumarase participates in an important series ofreactions known as the citric acid cycle or Krebs cycle, which allows cells to use oxygen and generate energy.
ALA is a coenzyme involved in cellular metabolism and the Krebs cycle, a series of chemical reactions used by mitochondria to release energy from carbohydrates, fats, and proteins into carbon dioxide, and chemical energy in the form of adenosine triphosphate(ATP).
Pyruvate is converted into acetyl-coenzyme A,which is the main input for a series of reactions known as the Krebs cycle(also known as the citric acid cycle or tricarboxylic acid cycle). .
L-Aspartic Acid plays animportant role in the citric acid cycle, or Krebs cycle, during which other amino acids and biochemicals, such as asparagine, arginine, lysine, methionine, threonine, and isoleucine, are synthesised.
Biology textbooks often state that 38 ATP molecules can be made per oxidised glucose molecule during cellular respiration(2 from glycolysis,2 from the Krebs cycle, and about 34 from the electron transport system).
Fluoroacetate is similar to acetate, which has a pivotal role in cellular metabolism.Fluoroacetate disrupts the citric acid cycle(also known as the Krebs cycle) by combining with coenzyme A to form fluoroacetyl CoA, which reacts with citrate synthase to produce fluorocitrate which binds very tightly to aconitase, thereby halting the citric acid cycle. .