Zuckerkandl E
J Mol Evol. 1976 Apr 9;7(3):167-83. doi: 10.1007/BF01731487.
The distinction between molecular sites that mainly carry out general functions and sites committed to specific functions is analyzed, notably in terms of different evolutionary variabilities. Functional density is defined as the proportion of sites involved in specific functions. Weighted functional density, by representing the relative variability at specific-function sites is to some extent a measure of the specificity of molecular interactions. The relationship between general- and specific-function sites on the one hand the covarions of Fitch on the other is discussed. The functional "degeneracy" of amino acids is described as increasing the interdependence of general functions. It is predicted that proteins tht do not possess general-function sites besides their specific-function sites tend to "freeze" their primary structure, according to an evolutionary process that is an autocatalytic function of the decrease in site variability. This limits the use of weighted functional density as an indicator of the overall degree of interaction specificity of a protein to values that are not close to unity.
分析了主要执行一般功能的分子位点与致力于特定功能的位点之间的区别,特别是从不同的进化变异性角度进行分析。功能密度定义为参与特定功能的位点比例。加权功能密度通过表示特定功能位点的相对变异性,在一定程度上是分子相互作用特异性的一种度量。讨论了一方面一般功能位点与特定功能位点之间的关系,另一方面是费奇的协变子之间的关系。氨基酸的功能“简并性”被描述为增加了一般功能的相互依赖性。据预测,除了特定功能位点外不具有一般功能位点的蛋白质倾向于“冻结”其一级结构,这是根据一个进化过程,该过程是位点变异性降低的自催化功能。这将加权功能密度作为蛋白质相互作用特异性总体程度指标的使用限制在不接近1的值上。