Peng X B, Mount S M
Department of Biological Sciences, Columbia University, New York, New York 10027.
Genetics. 1990 Dec;126(4):1061-9. doi: 10.1093/genetics/126.4.1061.
The white-apricot (wa) allele differs from the wild-type white gene by the presence of the retrovirus-like transposable element copia within the transcription unit. Most RNAs derived from wa have 3' termini within this insertion, and only small amounts of structurally normal RNA are produced. The activity of wa is reduced in trans by a semidominant mutation in the gene Enhancer-of-white-apricot (E(wa). Flies that are wa and heterozygous for the enhancer have eyes which are much lighter than the orange-yellow of wa alone while E(wa) homozygotes have white eyes. This semidominant effect on pigmentation is correlated with a corresponding decrease in white RNA having wild type structure, and flies homozygous for E(wa) have increased levels of aberrant RNAs. Three reverant alleles of E(wa) generated by reversion of the dominant enhancer phenotype with gamma radiation are noncomplementing recessive lethals, with death occurring during the larval stage. The effects on wa eye pigmentation of varying doses of the original E(wa) allele, the wild type allele, and the revertant alleles suggest that the original E(wa) allele produces a product that interferes with the activity of the wild type gene and that the revertants are null alleles. We propose that the E(wa) gene product influences the activity of the downstream copia long terminal repeat in 3' end formation.
白色 - 杏色(wa)等位基因与野生型白色基因的不同之处在于转录单元内存在类似逆转录病毒的转座元件copia。源自wa的大多数RNA在该插入片段内具有3'末端,仅产生少量结构正常的RNA。白色 - 杏色增强子(E(wa))基因中的半显性突变会反式降低wa的活性。携带wa且对该增强子呈杂合状态的果蝇,其眼睛颜色比仅为wa的橙黄色要浅得多,而E(wa)纯合子则具有白色眼睛。这种对色素沉着的半显性效应与具有野生型结构的白色RNA相应减少相关,并且E(wa)纯合子果蝇中异常RNA的水平有所增加。通过γ辐射使显性增强子表型回复而产生的三个E(wa)回复等位基因是非互补隐性致死基因,死亡发生在幼虫阶段。不同剂量的原始E(wa)等位基因、野生型等位基因和回复等位基因对wa眼睛色素沉着的影响表明,原始E(wa)等位基因产生的产物会干扰野生型基因的活性,而回复突变体是无效等位基因。我们提出E(wa)基因产物在3'末端形成过程中影响下游copia长末端重复序列的活性。