Johnson C D, Duckett J G, Culotti J G, Herman R K, Meneely P M, Russell R L
Genetics. 1981 Feb;97(2):261-79. doi: 10.1093/genetics/97.2.261.
Within a set of five separable molecular forms of acetylcholinesterase found in the nematode Caenorhabditis elegans, previously reported differences in kinetic properties identify two classes, A and B, likely to be under separate genetic control. Using differences between these classes in sensitivity to inactivation by sodium deoxycholate, a screening procedure was devised to search for mutants affected only in class A forms. Among 171 previously isolated behavioral and morphological mutant strains examined by this procedure, one (PR946) proved to be of the expected type, exhibiting a selective deficiency of class A acetylcholinesterase forms. Although originally isolated because of its uncoordinated behavior, this strain was subsequently shown to harbor mutations in two genes; one in the previously identified gene unc-3, accounting for its behavior, and one in a newly identified gene, ace-1, accounting for its selective acetylcholinesterase deficiency. Derivatives homozygous only for the ace-1 mutation also lacked class A acetylcholinesterase forms, but were behaviorally and developmentally indistinguishable from wild type. The gene ace-1 has been mapped near the right end of the X chromosome. Gene dosage experiments suggest that it may be a structural gene for a component of class A acetylcholinesterase forms.
在秀丽隐杆线虫中发现的一组五种可分离的乙酰胆碱酯酶分子形式中,先前报道的动力学特性差异确定了A和B两类,它们可能受不同的基因控制。利用这两类对脱氧胆酸钠失活敏感性的差异,设计了一种筛选程序来寻找仅受A类形式影响的突变体。在用该程序检查的171个先前分离的行为和形态突变株中,有一个(PR946)被证明是预期类型,表现出A类乙酰胆碱酯酶形式的选择性缺陷。尽管该菌株最初因其不协调行为而被分离,但随后显示它在两个基因中携带突变;一个在先前鉴定的unc-3基因中,解释其行为,另一个在新鉴定的ace-1基因中,解释其选择性乙酰胆碱酯酶缺陷。仅对ace-1突变纯合的衍生物也缺乏A类乙酰胆碱酯酶形式,但在行为和发育上与野生型无区别。ace-1基因已定位在X染色体右端附近。基因剂量实验表明,它可能是A类乙酰胆碱酯酶形式的一个组成部分的结构基因。