Moiseenko E V, Luss E V, Volkova L V, Baron E M, Petrova O N
Genetika. 1982 Oct;18(10):1703-12.
The paper presents a biochemical study of hypoxanthine-guanine phosphoribozyltransferase (HRPT) in mutant clones of Chinese hamster cells showing an ability for complementation. In order to characterize HPRT, its kinetic properties, temperature sensitivity and electrophoretic mobility in polyacrylamide gel were assayed. According to the complementation map, the nine mutant clones studied can be divided into four complementation groups. All these clones have been shown to be mutants with respect to the HPRT structural gene, as they synthesize the structurally and functionally altered enzyme. A comparative biochemical analysis of HPRT in the four complementation groups revealed substantial differences in mutant enzymes from different groups; hence, the possibility of complementation on the molecular level. All biochemical characteristics of HPRT tested are similar in clones belonging to one and the same complementation group, which could indicate that they have the same structural variant of the enzyme, regardless of the manner in which the mutants were obtained. Having revealed the similarity and the distinctive features of mutant enzymes within complementation groups, the biochemical analysis confirmed the results of complementation analysis and added the structural information concerning mutant variants of the enzyme. Thus, the complementation map of the HPRT gene yielded by hybridological analysis has been tested and confirmed by an independent biochemical study. Complementation analysis applied to the HPRT mutants made it possible to identify qualitatively distinct groups. Each of these groups may be regarded as an allele of the gene, and the sum of the groups may be regarded as a series of multiple alleles.
本文介绍了对中国仓鼠细胞突变克隆中次黄嘌呤 - 鸟嘌呤磷酸核糖基转移酶(HRPT)的生化研究,这些克隆显示出互补能力。为了表征HPRT,对其动力学性质、温度敏感性及在聚丙烯酰胺凝胶中的电泳迁移率进行了测定。根据互补图谱,所研究的9个突变克隆可分为4个互补组。所有这些克隆均已证明是HPRT结构基因的突变体,因为它们合成的酶在结构和功能上发生了改变。对4个互补组中的HPRT进行的比较生化分析揭示了不同组突变酶之间存在显著差异;因此,在分子水平上存在互补的可能性。在属于同一互补组的克隆中,所测试的HPRT的所有生化特性均相似,这可能表明它们具有相同的酶结构变体,无论突变体是如何获得的。在揭示了互补组内突变酶的相似性和独特特征后,生化分析证实了互补分析的结果,并补充了有关酶突变变体的结构信息。因此,通过杂交分析得出的HPRT基因互补图谱已通过独立的生化研究得到检验和证实。对HPRT突变体进行的互补分析使得能够鉴定出性质上不同的组。这些组中的每一组都可被视为该基因的一个等位基因,而这些组的总和可被视为一系列复等位基因。