Walz D, Caplan S R
Proc Natl Acad Sci U S A. 1987 Sep;84(17):6152-6. doi: 10.1073/pnas.84.17.6152.
A model for exact sensory adaptation has been published by Segel and co-workers in several papers [e.g., Knox, B. E., Devreotes, P. N., Goldbeter, A. & Segel, L. A. (1986) Proc. Natl. Acad. Sci. USA 83, 2345-2349]. The model comprises a pair of states whose relative probabilities are determined by the binding of a ligand. A second pair of states related by the same ligand binding is accessible as a consequence of either a conformational change or a "covalent modification." By taking proper account of detailed balance, we show that the notion of covalent modification in this context includes three cases, two of which involve dissipation of metabolic energy. The condition for exact adaptation is dependent on metabolite concentrations in all cases of covalent modification. The performance of the model is critically examined on thermodynamic and kinetic grounds.
塞格尔及其同事在几篇论文中发表了一种精确感官适应模型[例如,诺克斯,B.E.,德夫罗茨,P.N.,戈德贝特,A.和塞格尔,L.A.(1986年)《美国国家科学院院刊》83卷,2345 - 2349页]。该模型由一对状态组成,其相对概率由配体的结合决定。由于构象变化或“共价修饰”,由相同配体结合相关的第二对状态是可及的。通过适当考虑细致平衡,我们表明在这种情况下共价修饰的概念包括三种情况,其中两种情况涉及代谢能量的耗散。在所有共价修饰情况下,精确适应的条件取决于代谢物浓度。从热力学和动力学角度对该模型的性能进行了严格检验。