Walker E J, Ralston G B, Darvey I G
Biochem J. 1978 Jul 1;173(1):1-4. doi: 10.1042/bj1730001.
The allosteric model for ribonuclease activity by Walker, Ralston & Darvey [(1975) Biochem.J. 147, 425--433; (1976) Biochem.J. 153, 329--337] involves the binding of a large number of molecules of substrate or substrate analogue to a series of allosteric sites on the enzyme. In the present paper, the nature of these allosteric interactions is investigated. The effects of ionic strength pH carbamoylation of lysine to homocitrulline and of deamidation of glutamine and asparagine on plots of velocity versus substrate concentration are examined and evidence is presented that the allosteric transition involves an electrostatic interaction between the negatively charged substrate molecules and the cationic groups on the enzyme.
沃克、拉尔斯顿和达维提出的核糖核酸酶活性的别构模型[(1975年)《生物化学杂志》147卷,425 - 433页;(1976年)《生物化学杂志》153卷,329 - 337页]涉及大量底物或底物类似物分子与酶上一系列别构位点的结合。在本文中,对这些别构相互作用的性质进行了研究。研究了离子强度、pH值、赖氨酸向高瓜氨酸的氨甲酰化以及谷氨酰胺和天冬酰胺的脱酰胺作用对速度与底物浓度关系图的影响,并提供了证据表明别构转变涉及带负电荷的底物分子与酶上阳离子基团之间的静电相互作用。