首页> 美国卫生研究院文献>Genetics >The Drosophila melanogaster ade5 gene encodes a bifunctional enzyme for two steps in the de novo purine synthesis pathway.
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The Drosophila melanogaster ade5 gene encodes a bifunctional enzyme for two steps in the de novo purine synthesis pathway.

机译:果蝇果蝇ade5基因编码从头嘌呤合成途径中的两个步骤的双功能酶。

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摘要

Steps 6 and 7 of de novo purine synthesis are performed by 5-aminoimidazole ribonucleotide carboxylase (AIRc) and 4-[(N-succinylamino)carbonyl]-5-aminoimidazole ribonucleotide synthetase (SAICARs), respectively. In vertebrates, a single gene encodes AIRc-SAICARs with domains homologous to Escherichia coli PurE and PurC. We have isolated an AIRc-SAICARs cDNA from Drosophila melanogaster via functional complementation with an E. coli purC purine auxotroph. This cDNA encodes AIRc yet is unable to complement an E. coli purE mutant, suggesting functional differences between Drosophila and E. coli AIRc. In vertebrates, the AIRc-SAICARs gene shares a promoter region with the gene encoding phosphoribosylamidotransferase, which performs the first step in de novo purine synthesis. In Drosophila, the AIRc-SAICARs gene maps to section 11B4-14 of the X chromosome, while the phosphoribosylamidotransferase gene (Prat) maps to chromosome 3; thus, the close linkage of these two genes is not conserved in flies. Three EMS-induced X-linked adenine auxotrophic mutations, ade4(1), ade5(1), and ade5(2), were isolated. Two gamma-radiation-induced (ade5(3) and ade5(4)) and three hybrid dysgenesis-induced (ade5(5), ade5(6), and ade5(8)) alleles were also isolated. Characterization of the auxotrophy and the finding that the hybrid dysgenesis-induced mutations all harbor P transposon sequences within the AIRc-SAICARs gene show that ade5 encodes AIRc-SAICARs.
机译:从头合成嘌呤的步骤6和7分别由5-氨基咪唑核糖核酸羧化酶(AIRc)和4-[((N-琥珀酰氨基)羰基] -5-氨基咪唑核糖核酸合成酶(SAICARs)进行。在脊椎动物中,单个基因编码具有与大肠杆菌PurE和PurC同源的域的AIRc-SAICAR。我们通过与大肠杆菌purC嘌呤营养缺陷型的功能互补,从果蝇中分离了AIRc-SAICARs cDNA。此cDNA编码AIRc,但不能与大肠杆菌purE突变体互补,提示果蝇和大肠杆菌AIRc之间存在功能差异。在脊椎动物中,AIRc-SAICARs基因与编码磷酸核糖酰胺基转移酶的基因共享一个启动子区域,该基因执行从头嘌呤合成的第一步。在果蝇中,AIRc-SAICARs基因映射到X染色体的11B4-14部分,而磷酸核糖酰胺基转移酶基因(Prat)映射到3号染色体。因此,这两个基因的紧密连接在果蝇中并不保守。分离了三个EMS诱导的X连锁腺嘌呤营养缺陷型突变ade4(1),ade5(1)和ade5(2)。还分离了两个伽马射线辐射诱导的(ade5(3)和ade5(4))和三个杂交发育不全诱导的(ade5(5),ade5(6)和ade5(8))等位基因。营养缺陷型的特征以及杂种不成基因诱导的突变均在AIRc-SAICARs基因内包含P转座子序列的发现表明ade5编码AIRc-SAICARs。

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