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Detection of competitive enzyme inhibition with end point progress curve data

Gutierrez Arenas, Omar, 1975- (author)
Uppsala universitet,Centrum för forsknings- och bioetik,Department Of Biochemistry and Organic Chemistry. Uppsala University
Danielson, U. Helena (author)
Uppsala universitet,Institutionen för biokemi och organisk kemi
 (creator_code:org_t)
Elsevier BV, 2006
2006
English.
In: Analytical Biochemistry. - : Elsevier BV. - 0003-2697 .- 1096-0309. ; 358:1, s. 11-19
  • Journal article (peer-reviewed)
Abstract Subject headings
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  • A model for a dimensionless factor, the inhibition detection limit (IDL), which describes the limit of detection of competitive inhibition for end point assays as a function of the proportion of substrate converted into product, has been developed. For a given end point enzymatic assay, the IDL function has a maximum that is dependent on the error structure parameters (four parameters) of the assay, the value of [S]o/K(ms), and the extent of product inhibition (K(ms)/K(mp)). Accordingly, the substrate conversion level that maximized the ability to detect samples with high Ki/[I] ratios was predicted for each member of a population of simulated assays. Furthermore, we identified a consensus substrate conversion level where the probability of a near-optimal robustness and detection limit for all the members of the assay population is maximal. Unlike the optimal substrate conversion level for individual assays, this consensus substrate conversion level was dependent only on [S]o/K(m), K(ms)/K(mp), and whether the signal increases or decreases during the course of the reaction. Consensus substrate conversion levels were beyond the initial velocity range for almost all the analyzed assay populations. It was shown that the IDL factor was a more informative indicator of assay quality than the popular Z' factor.

Subject headings

NATURVETENSKAP  -- Biologi (hsv//swe)
NATURAL SCIENCES  -- Biological Sciences (hsv//eng)
NATURVETENSKAP  -- Biologi -- Biokemi och molekylärbiologi (hsv//swe)
NATURAL SCIENCES  -- Biological Sciences -- Biochemistry and Molecular Biology (hsv//eng)

Keyword

Binding Sites
Binding
Competitive
Catalysis
Computer Simulation
Enzyme Inhibitors
Enzyme Inhibitors: pharmacology
Enzymes
Enzymes: metabolism
Kinetics
Monte Carlo Method
Biochemistry

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ref (subject category)
art (subject category)

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