Bernstine E G, Koh C
Proc Natl Acad Sci U S A. 1980 Jul;77(7):4193-5. doi: 10.1073/pnas.77.7.4193.
Mouse mitochondrial malic enzyme [L-malate:NADP+ oxidoreductase (oxaloacetate-decarboxylating), EC 1.1.1.40] is a tetrameric protein. Two alleles of the structural gene (Mod-2) are known which code for electrophoretically distinct enzyme subunits: Mod-2a and Mod-2b. A regulatory gene (Mdr-1), closely linked to Mod-2 on chromosome 7, determines the rate of mitochondrial malic enzyme synthesis in brain. Two alleles of Mdr-1 are known: Mdr-1a (high activity) and Mdr-1b (low activitiy). By pulse-labeling with [35S]methionine, immune precipitation, and isoelectric focusing under dissociating conditions, we have measured the relative rates of synthesis of the two types of enzyme subunit in animals of genotypes Mdr-1a Mod-2a/Mdr-1a Mod-2b and Mdr-1S Mod-2a/Mdr-1b Mod-2b. The results show that in the former animals both types of subunit are made at an identical rate, whereas in the latter animals the Mod-2a gene product is synthesized at a rate 2.2 times that of the Mod-2b-coded subunit. Thus we have unambiguously demonstrated that Mdr-1 is cis-active in its control of the expression of the Mod-2 structural gene.
小鼠线粒体苹果酸酶[L-苹果酸:NADP⁺氧化还原酶(草酰乙酸脱羧),EC 1.1.1.40]是一种四聚体蛋白。已知结构基因(Mod-2)的两个等位基因编码电泳性质不同的酶亚基:Mod-2a和Mod-2b。一个与位于7号染色体上的Mod-2紧密连锁的调控基因(Mdr-1),决定了脑中线粒体苹果酸酶的合成速率。已知Mdr-1的两个等位基因:Mdr-1a(高活性)和Mdr-1b(低活性)。通过用[³⁵S]甲硫氨酸进行脉冲标记、免疫沉淀以及在解离条件下进行等电聚焦,我们测量了基因型为Mdr-1a Mod-2a/Mdr-1a Mod-2b和Mdr-1S Mod-2a/Mdr-1b Mod-2b的动物中两种酶亚基的相对合成速率。结果表明,在前一种动物中,两种亚基的合成速率相同,而在后一种动物中,Mod-2a基因产物的合成速率是Mod-2b编码亚基的2.2倍。因此,我们明确证明了Mdr-1在其对Mod-2结构基因表达的控制中是顺式作用的。