Flux Control and Following Atoms with Labelled Substrates
Control of a pathway is usually shared between several enzymes rather than held by one, and how much each holds can be measured. Feeding a substrate whose atoms are labelled and seeing where they appear is how the routes actually taken are established.
What a learner can do afterwards
- Explains why calling one enzyme the rate-limiting step is usually an approximation.
- Predicts where a label ends up given a stated pathway and starting position.
- Uses a labelling result to choose between two proposed routes.
1 · Read
Control of a pathway is usually shared between several enzymes rather than held by one. Speeding a single enzyme rarely speeds the whole pathway in proportion, because the tightest constraint shifts with fuel, demand, and oxygen. Respiration shows it live: phosphofructokinase, pyruvate dehydrogenase, and the cycle enzymes each answer overlapping signals. Calling one of them the rate-limiting step is an approximation that holds only under specific conditions.
Inhibitors help find where control sits. A competitive inhibitor binds the active site itself, so it raises the apparent substrate need without changing the maximum rate. That kinetic signature reveals which step strains under given conditions, and such patterns are among the oldest tools for dissecting control.
Picture two proposed routes between the same start and end, drawn as rival maps. Feed a labelled precursor and watch where the label emerges: if each route sends the atom to a different product, one measurement picks the true road. Tracing atoms this way turns static maps into tested descriptions of living flux, the rate at which material flows through a pathway.
To predict where a label ends up, walk the atom through each reaction of the proposed route in order and land it on its product position.
Control is shared and shifting, inhibition signatures probe it, and labels reveal the road truly taken.
2 · Watch
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Where it sits
8 questions wait behind this lesson, each with its answer explained. Every answer feeds the sky: stars light as they are learned, and dim when it is time to come back.