Whitehead E P, Egmond M R
Biochem J. 1979 Feb 1;177(2):631-9. doi: 10.1042/bj1770631.
It has often been claimed that random non-equilibrium mechanisms can result in apparent homotropic and heterotropic effects in steady-state kinetics of the kind more usually attributed to intersubunit allosteric interactions. However, it has never been shown whether any simple random mechanism could in fact give patterns of apparent interaction similar to those predicted by the well-known allosteric models. The patterns of apparent substrate co-operativity and affinity given by the steady-state of a standard simple random substrate-modifier mechanism in which catalytic velocity is proportional to substrate binding have been analysed mathematically and numerically. All patterns possible with this model are described. Some of them rather resemble those possible with standard allosteric models, in that there is a high-affinity and a low-affinity form at zero and infinite modifier concentrations (or vice versa) which show Michaelian behaviour, apparent co-operativity passing through a maximum or minimum at intermediate affinities. Unlike the allosteric models the family of curves is in principle not symmetrical. The random model can also give behaviour not possible with the standard allosteric models, such as higher substrate affinity at intermediate modifier concentrations than at either zero or infinite modifier, with concomitant negative apparent substrate co-operativity, or a single change of sign of apparent substrate co-operativity. The analysis uses recently discovered simplified forms of steady-state equations for random models.
人们常常认为,随机非平衡机制可在稳态动力学中产生明显的同促效应和异促效应,而这类效应通常归因于亚基间的变构相互作用。然而,从未有人证明任何简单的随机机制是否实际上能产生与著名变构模型所预测的相似的明显相互作用模式。对一种标准简单随机底物 - 调节剂机制(其中催化速度与底物结合成正比)的稳态所给出的明显底物协同性和亲和力模式进行了数学和数值分析。描述了该模型可能出现的所有模式。其中一些模式与标准变构模型可能出现的模式颇为相似,即在零和无限调节剂浓度下(或反之亦然)存在高亲和力和低亲和力形式,它们呈现米氏行为,明显的协同性在中间亲和力处通过最大值或最小值。与变构模型不同,曲线族原则上不对称。随机模型还能产生标准变构模型不可能出现的行为,例如在中间调节剂浓度下底物亲和力高于零或无限调节剂浓度时的情况,同时伴有负的明显底物协同性,或明显底物协同性的单一符号变化。该分析使用了最近发现的随机模型稳态方程的简化形式。