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Temperature, substrate concentration and pH

Key concepts in biology · Enzyme action and activity · note 3 of 5

Temperature, substrate concentration and pHSpec 1.9

Temperature

As temperature increases, the particles move faster and have more kinetic energy. Enzyme and substrate collide more often, so the rate of reaction increases. The rate is highest at the optimum temperature, which is around 37 °C for many human enzymes. Above the optimum, the active site changes shape, the enzyme is denatured and the rate falls quickly towards zero.

Substrate concentration

At low substrate concentration, increasing it makes the rate increase, because collisions between substrate and active sites are more frequent. Eventually all the active sites are occupied at once. Adding more substrate then has no effect, so the rate levels off. The enzyme concentration is now limiting the rate.

pH

Each enzyme has an optimum pH where it works fastest. If the pH is higher or lower than the optimum the rate decreases, and at extreme pH values the active site changes shape and the enzyme is denatured. Different enzymes have different optimum pH values.

Three graphs of rate of reaction: against temperature it rises to an optimum then falls steeply to zero; against substrate concentration it rises then levels off when all active sites are occupied; against pH it is a bell-shaped curve with an optimum pH.Tap to enlarge
How temperature, substrate concentration and pH affect the rate of an enzyme-controlled reaction.
Summary of the effects on enzyme activity
FactorBelow the optimum / lowAt the optimumAbove the optimum / high
TemperatureRate increases as particles move faster and collide more oftenHighest rateEnzyme denatured, rate falls
pHRate decreases as pH moves away from the optimum, and the enzyme is denatured at extreme pHHighest rateRate decreases as pH moves away from the optimum, and the enzyme is denatured at extreme pH
Substrate concentrationRate increasesNot applicableRate stops increasing when all active sites are occupied