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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Phenotypes of mutations in the 5'-UTR of a limiting transcription factor in Aspergillus nidulans can be accounted for by translational inhibition and leaky scanning.
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Phenotypes of mutations in the 5'-UTR of a limiting transcription factor in Aspergillus nidulans can be accounted for by translational inhibition and leaky scanning.

机译:构巢曲霉中限制性转录因子的5'-UTR中的突变表型可以通过翻译抑制和泄漏扫描来解释。

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摘要

The uaY gene encodes the transcriptional activator of purine catabolism genes in Aspergillus nidulans. uaY12 results in strongly defective growth on purines as nitrogen sources and in strongly diminished transcription of UaY-regulated genes. This mutation introduces an ATG codon 64 bp upstream of the uaY ATG, generating a 68-codon open reading frame (uORFA), overlapping with the uaY ORF. uaY12 revertants fall into three categories: i. The majority eliminate the aberrant ATG. The growth and transcriptional phenotypes of these revertants are identical to those of the wild type. i. Two revertants create a stop codon in frame with the uaY12 aberrant ATG, shortening the length of the uORFA, thus uORFA no longer overlaps the uaY ORF. The latter are partial suppressors of the uaY12 mutation, while chain termination suppressors, in turn, suppress this novel phenotype. iii. Two partial suppressors are unlinked to uaY. These two mutations result in a pleiotropic phenotype usually associated with ribosomal proteins. We hypothesize that uORFA strongly diminishes translation of the uaY ORF and that revertants negate this effect by a number of different mechanisms. The first-AUG rule and the phenomena of translational inhibition and leaky scanning provide a coherent explanation of the results presented in this article.
机译:uaY基因编码构巢曲霉中嘌呤分解代谢基因的转录激活因子。 uaY12导致嘌呤作为氮源的生长严重缺陷,并导致UaY调控基因的转录大大降低。此突变在uaY ATG上游引入了一个64 bp的ATG密码子,生成了一个68密码子的开放阅读框(uORFA),与uaY ORF重叠。 uaY12还原剂分为三类:i。大多数消除了异常的ATG。这些回复子的生长和转录表型与野生型相同。一世。两个还原子与uaY12异常ATG共同构成一个终止密码子,从而缩短了uORFA的长度,因此uORFA不再与uaY ORF重叠。后者是uaY12突变的部分抑制子,而链终止抑制剂则抑制了这种新的表型。 iii。两个部分抑制器与uaY无关。这两个突变导致通常与核糖体蛋白相关的多效性表型。我们假设uORFA大大减少了uaY ORF的翻译,而还原蛋白通过多种不同的机制消除了这种作用。第一AUG规则以及翻译抑制和泄漏扫描现象为本文提供的结果提供了连贯的解释。

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