Dorfman B Z, Goldfinger B A, Berger M, Goldstein S
Science. 1970 Jun 19;168(3938):1482-4. doi: 10.1126/science.168.3938.1482.
Two kinds of phenotypic expression in purine biosynthesis result from recessive mutation to adel2 in baker's yeast. The mutants are adenine-specific, blocked in the conversion of inosine 5'-phosphate to adenylosuccinic acid; their response to inhibition of pathway activity by adenine is considerably reduced. Allelic partial reversions can restore prototrophy without correcting the regulatory defect imparted by the primary mutation. The separation of the two properties of the locus by allelic mutation supports the hypothesis that the locus specifies a protein of two independent functions, enzymatic and regulatory.
面包酵母中向adel2的隐性突变导致嘌呤生物合成中出现两种表型表达。这些突变体对腺嘌呤具有特异性,在肌苷5'-磷酸转化为腺苷酸琥珀酸的过程中受阻;它们对腺嘌呤对途径活性的抑制作用的反应大大降低。等位基因部分回复可以恢复原养型,而无需纠正初级突变所赋予的调节缺陷。通过等位基因突变将该位点的两种特性分离,支持了该位点指定一种具有两种独立功能(酶促和调节)的蛋白质的假设。