what enzyme in glycolysis in inhibited by phosphoenolpyruvate - Answers phosphofructokinase-
1 (PFK-1)
which enzyme is involved in BOTH glycolysis and gluconeogenesis - Answers triose phosphate
isomerase
ATP synthase synthesizes ATP through a mechanism known an chemiosmosis.
which statement best describes this process - Answers the energy for ATP synthesis comes
from the electrochemical gradient formed by proton accumulation in the intermembrane space
the image shows the oxygen-evolving center of Photosystem II, the P680 reaction center, along
with a critical tyrosine residue. in the process of water splitting in PSII, the role of this tyrosine is
primarily to: - Answers serve as an intermediate electron carrier between P680 and the oxygen-
evolving complex
looking at the mechanism shown, the enzyme that catalyzes this reaction is ____. the substrate
is ____, and the product is ____. - Answers 1. Glyceraldehyde-3-phosphate dehydrogenase
2. Glyceraldehyde-3-phosphate
3. 1,3-bisphosphoglycerate
the primary function of the malate-aspartate shuttle is to: - Answers transfer reducing
equivalents (NADH) from the cytosol to the mitochondria
which statement best describes how insulin and glucagon regulate PFK-2 activity and what is
the resultant effect on glucose metabolism - Answers insulin activates PFK-2, increasing
glycolysis
glucagon inactivates PFK-2, promoting gluconeogenesis
what enzymes are directly involved in substrate-level phosphorylation during glycolysis -
Answers phosphoglycerate kinase and pyruvate kinase
why is the regeneration of NAD+ essential in anaerobic glycolysis - Answers without NAD+,
glycolysis would halt as NAD+ is required for glyceraldehyde-3-phosphate dehydrogenase
in a muscle cell under anaerobic conditions, pyruvate is primarily converted into: - Answers
lactate
the Warburg Effect refers to cancer cells preference for glycolysis over oxidative
phosphorylation, even in oxygen-rich conditions. this phenomenon is beneficial for cancer cells
primarily because: - Answers it produces ATP more rapidly with fewer steps, albeit less
efficiently