indeed they do..however they do not have a mitochondria which can be the source of the confusion....they do it in a similar space and since they dont have to cross the double membrane of mitochondira they make a net of 38 ATP versus the 36 of eukaryotic cells! indeed they do..however they do not have a mitochondria which can be the source of the confusion....they do it in a similar space and since they dont have to cross the double membrane of mitochondira they make a net of 38 ATP versus the 36 of eukaryotic cells!
Hans Krebs discovered the Krebs cycle, also known as the citric acid cycle, in 1937.
Fumarate and aspartate are the compounds that are linked between the urea cycle and the Krebs cycle. Fumarate from the Krebs cycle can be converted to arginine in the urea cycle, while aspartate from the urea cycle can be converted to oxaloacetate in the Krebs cycle.
why pyruvic acid do not move as it is in krebs cycle
The Krebs, or citric acid cycle, occurs in the mitochondrial matrix.
oxaloacetic acid
The Krebs cycle in bacteria occurs in the cytoplasm. Unlike in eukaryotic cells, where it occurs in the mitochondria, bacterial cells do not have mitochondria, so the Krebs cycle takes place in the cytoplasm.
Hans Krebs discovered the Krebs cycle, also known as the citric acid cycle, in 1937.
Krebs cycle.
Fumarate and aspartate are the compounds that are linked between the urea cycle and the Krebs cycle. Fumarate from the Krebs cycle can be converted to arginine in the urea cycle, while aspartate from the urea cycle can be converted to oxaloacetate in the Krebs cycle.
Krebs
the Krebs cycle, aka citric acid cycle, occurs in the mitochondrial matrix
why pyruvic acid do not move as it is in krebs cycle
The Krebs, or citric acid cycle, occurs in the mitochondrial matrix.
No, the Krebs cycle is aerobic, meaning it requires oxygen to function.
The Krebs cycle is also called the citric acid cycle (CAC).
oxaloacetic acid
The Krebs cycle is aerobic, meaning it requires oxygen to function.