The Michaelis-Menten equation models the hyperbolic relationship between [S] and the initial reaction rate Vo for an enzyme-catalyzed, single-substrate reaction E + SES → E+ P. The model can be more readily understood when comparing three conditions: [S] << Km, [S] = Km, and [S] >> Km. Match each statement with the condition that it describes. Note that "rate" refers to initial velocity Vo where steady state conditions are assumed. [Etotal] refers to the total enzyme concentration and [Efree] refers to the concentration of free enzyme. [S] << Km Half of the active sites are filled with S. [ES] is much lower than [Efree]. [S] = Km Answer Bank [S] >> Km This condition rarely occurs for most in vivo enzymes. [Efree] is about equal to [Etotal]. Not true for any of these conditions Almost all active sites will be filled. Increasing [Etotal] will lower Km.

Biochemistry
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Chapter1: Biochemistry: An Evolving Science
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C7 Q4:

The Michaelis-Menten equation models the hyperbolic relationship between [S] and the initial reaction rate Vo for an
enzyme-catalyzed, single-substrate reaction E+ SES →→→→ E + P. The model can be more readily understood when
comparing three conditions: [S] << Km, [S] = Km, and [S] >> Km.
Match each statement with the condition that it describes.
Note that "rate" refers to initial velocity Vo where steady state conditions are assumed. [Etotal] refers to the total enzyme
concentration and [Efree] refers to the concentration of free enzyme.
[S] << Km
Half of the active sites are filled with S.
[ES] is much lower than [Efree].
[S] = Km
Answer Bank
[S] >> Km
This condition rarely occurs for most in vivo enzymes.
[Efree] is about equal to [Etotal].
Not true for any of these
conditions
Almost all active sites will be filled.
Increasing [Exotal] will lower Km-
Transcribed Image Text:The Michaelis-Menten equation models the hyperbolic relationship between [S] and the initial reaction rate Vo for an enzyme-catalyzed, single-substrate reaction E+ SES →→→→ E + P. The model can be more readily understood when comparing three conditions: [S] << Km, [S] = Km, and [S] >> Km. Match each statement with the condition that it describes. Note that "rate" refers to initial velocity Vo where steady state conditions are assumed. [Etotal] refers to the total enzyme concentration and [Efree] refers to the concentration of free enzyme. [S] << Km Half of the active sites are filled with S. [ES] is much lower than [Efree]. [S] = Km Answer Bank [S] >> Km This condition rarely occurs for most in vivo enzymes. [Efree] is about equal to [Etotal]. Not true for any of these conditions Almost all active sites will be filled. Increasing [Exotal] will lower Km-
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