Yim J J, Grell E H, Jacobson K B
Science. 1977 Dec 16;198(4322):1168-70. doi: 10.1126/science.412253.
The amounts of sepiapterin and red pteridine eye pigments (drosopterins) in Drosophila melanogaster are known to be reduced in the purple mutant and restored to normal by a suppressor mutation. We show here that sepiapterin synthase activity is 30 percent of normal in pr and prbw, two naturally occurring alleles of purple, and is restored to nearly normal levels by the suppressor su(s)2. A heterozygote of two newly induced alleles of pr has even lower enzyme activity (less than 10 percent). The sepiapterin synthase activity is proportional to the number of wild-type pr alleles in flies when one and two copies of the allele are present and is higher in three-than in two-dose flies. We hypothesize that the purple locus may be a structural gene for sepiapterin synthase in Drosophila.
已知在果蝇中,紫色突变体的蝶呤和红色蝶啶眼色素(果蝇蝶呤)含量会减少,而通过抑制突变可恢复正常。我们在此表明,在紫色基因的两个自然存在的等位基因pr和prbw中,蝶呤合酶活性仅为正常水平的30%,而通过抑制基因su(s)2可恢复到接近正常水平。两个新诱导的pr等位基因的杂合子具有更低的酶活性(低于10%)。当存在一个和两个等位基因拷贝时,蝶呤合酶活性与果蝇中野生型pr等位基因的数量成正比,且三剂量果蝇中的活性高于两剂量果蝇。我们推测,紫色基因座可能是果蝇中蝶呤合酶的一个结构基因。