Agmon N
J Theor Biol. 1985 Apr 21;113(4):711-7. doi: 10.1016/s0022-5193(85)80188-0.
We present a simple model which extends the Michaelis-Menten mechanism by incorporating a continuous protein conformational change in enzymatic catalysis. This model can represent a quantitative version for "rack" or "induced fit" mechanisms. In the steady-state it leads to an equation of the Michaelis-Menten form, but with the catalytic step at the active site showing strong dependence on solvent viscosity. We suggest that a careful examination of solvent viscosity effects on enzymatic activity may serve as a test for the conformational change hypothesis.
我们提出了一个简单的模型,该模型通过在酶催化过程中纳入连续的蛋白质构象变化来扩展米氏机制。这个模型可以代表“支架”或“诱导契合”机制的定量版本。在稳态下,它会导出米氏形式的方程,但活性位点的催化步骤显示出对溶剂粘度的强烈依赖性。我们认为,仔细研究溶剂粘度对酶活性的影响可能作为构象变化假说的一种检验。