Bentley M M
Biochem Genet. 1986 Apr;24(3-4):291-308. doi: 10.1007/BF00502796.
Aldox "null" alleles which were isolated from natural populations in Great Britain and North Carolina were analyzed for complementation. No complementation was observed between any combinations of "null" alleles for aldehyde oxidase (AO) specific activity in late third-instar larvae and newly emerged adults. AO immunologically cross-reacting material (AO-CRM) was quantitated in all homozygous stocks at both developmental stages as well as all allelic combinations in newly emerged adults. When the adult organism contains only Aldoxn alleles, the polypeptides are not immunologically recognizable or may be rapidly degraded. Larvae and adults have different abilities to degrade mutationally altered enzymatically inactive AO polypeptide or synthesize them differentially. This is indicated by easily measurable AO-CRM levels in late third-instar larvae of Aldoxn homozygotes, while newly emerged adult Aldoxn homozygotes have very little, if any, AO-CRM. Newly emerged adult heterozygotes of Aldoxn/Aldox+ do have increased AO-CRM, indicating that the Aldoxn alleles can code for a polypeptide which can be "rescued" if Aldox+ gene product is present. Heterozygotes containing an Aldox+ allele with a deficiency for the Aldox region produce 74.2% of the AO-CRM found in Aldox+ homozygotes. This may indicate the presence of trans-acting factors which serve to activate gene expression in a system in which each gene copy is not maximally expressed.
对从英国和北卡罗来纳州的自然种群中分离出的醛氧化酶(Aldox)“无效”等位基因进行了互补分析。在三龄晚期幼虫和新羽化的成虫中,醛氧化酶(AO)比活性的任何“无效”等位基因组合之间均未观察到互补现象。在两个发育阶段的所有纯合品系以及新羽化成虫的所有等位基因组合中,对AO免疫交叉反应物质(AO-CRM)进行了定量分析。当成体生物体仅含有Aldoxn等位基因时,这些多肽无法通过免疫识别,或者可能会迅速降解。幼虫和成虫在降解突变产生的无酶活性AO多肽或差异合成这些多肽方面具有不同的能力。这一点在Aldoxn纯合子的三龄晚期幼虫中可通过易于测量的AO-CRM水平得到体现,而新羽化的Aldoxn纯合成虫中,AO-CRM即使有也非常少。Aldoxn/Aldox+的新羽化杂合成虫的AO-CRM确实有所增加,这表明如果存在Aldox+基因产物,Aldoxn等位基因可以编码一种能够被“拯救”的多肽。含有一个Aldox+等位基因且Aldox区域存在缺陷的杂合子产生的AO-CRM是Aldox+纯合子中的74.2%。这可能表明存在反式作用因子,在一个并非每个基因拷贝都能最大程度表达的系统中,这些因子有助于激活基因表达。