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Methods of determining rate constants in single-substrate–single-product enzyme reactions. Use of induced transport: limitations of product inhibition

机译:确定单底物-单产物酶反应中速率常数的方法。使用诱导运输:产品抑制的局限性

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摘要

1. The calculation of the rate constants from steady-state kinetics of a single-substrate–single-product enzyme reaction in which there is an isomerization of the enzyme is described. 2. It is shown that even with the use of isotopically labelled substrates a set of solutions for the constants is obtained rather than a unique solution. However, limits are derived within which they must lie. 3. The most appropriate observations to determine the rate constants are measurements of Vmax. and Km for both substrate and product, and measurement of the degree of countertransport in an induced-transport test. 4. Experimental procedures for induced-transport tests and the quantitative interpretation of the results obtained are discussed. 5. Product inhibition is shown to be an ambiguous and imprecise means of determining the rate constants. Further, the absence of a [substrate]×[product] term in the denominator of the steady-state rate equation does not necessarily mean that the isomerization of the enzyme is rapid, since the term also disappears when the isomerization is very slow. 6. Similar considerations apply to carrier mechanisms.
机译:1.描述了从单底物-单产物酶反应的稳态动力学计算速率常数的过程,其中存在酶的异构化。 2.表明即使使用同位素标记的底物,也可以获得一组常数的溶液,而不是唯一的溶液。但是,导出了必须包含的限制。 3.确定速率常数的最合适观察是测量Vmax。底物和产品的Km值和Km值,以及诱导传输测试中反向传输的程度的测量。 4.讨论了诱导运输试验的实验程序和对所得结果的定量解释。 5.产物抑制被证明是确定速率常数的模棱两可和不精确的手段。此外,在稳态速率方程的分母中不存在[底物]×[产物]项并不必然意味着酶的异构化是快速的,因为当异构化非常慢时该术语也会消失。 6.类似的考虑也适用于承运人机制。

著录项

  • 期刊名称 Biochemical Journal
  • 作者

    H. G. Britton;

  • 作者单位
  • 年(卷),期 1973(133),2
  • 年度 1973
  • 页码 255–261
  • 总页数 7
  • 原文格式 PDF
  • 正文语种
  • 中图分类 分子生物学;
  • 关键词

  • 入库时间 2022-08-17 15:02:17

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