Retzios A D, Thatcher D R
Biochimie. 1979;61(5-6):701-4. doi: 10.1016/s0300-9084(79)80169-8.
The amino acid substitution responsible for the different electrophoretic mobility of the ADHs alleloenzyme and the ADHf alleloenzyme of the alcohol dehydrogenase from a Nigerian population of Drosophila melanogaster has been established as lysine (ADHs) for threonine (ADHf). This result is discussed with reference to the charge state model of electrophoretic variation, in conjunction with other know substitutions at this locus. It is concluded that electrophoretic methods should be capable of distinguishing many alleloenzymes which have identical isoelectric points without recourse to explanations involving conformational variability.
已确定,来自尼日利亚黑腹果蝇群体的乙醇脱氢酶的ADHs等位酶和ADHf等位酶在电泳迁移率上存在差异,原因是赖氨酸(ADHs)被苏氨酸(ADHf)取代。结合该位点的其他已知取代情况,参照电泳变异的电荷状态模型对这一结果进行了讨论。得出的结论是,电泳方法应能够区分许多具有相同等电点的等位酶,而无需借助涉及构象变异性的解释。