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首页> 外文期刊>Journal of Molecular Biology >A SINGLE AMINO ACID CHANGE IN A PATHWAY-SPECIFIC TRANSCRIPTION FACTOR RESULTS IN DIFFERING DEGREES OF CONSTITUTIVITY, HYPERINDUCIBILITY AND DEREPRESSION OF SEVERAL STRUCTURAL GENES
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A SINGLE AMINO ACID CHANGE IN A PATHWAY-SPECIFIC TRANSCRIPTION FACTOR RESULTS IN DIFFERING DEGREES OF CONSTITUTIVITY, HYPERINDUCIBILITY AND DEREPRESSION OF SEVERAL STRUCTURAL GENES

机译:在特定结构性,超诱导性和降级程度不同的途径特定转录因子结果中单氨基酸变化

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摘要

uaY(c)462 is a gain-of-function mutation in the purine catabolism positive regulatory gene of Aspergillus nidulans. This allele leads to a constitutive, hyperinducible and derepressed expression of a least three genes controlled by uaY, and this occurs at different levels depending on the target gene. The uaY(c)462 allele was mapped physically in relation to known loss-of-function alleles and sequenced. uaY(c)462 is a one-base change in codon 222, resulting in a serine to leucine change. We propose that this mutation maps in a functional domain involved, directly or indirectly, in the interaction of UaY with other components of the transcriptional apparatus. A sequence similar to the motif surrounding serine 222 may play similar roles in the PPR1 and ADR1 proteins of Saccharomyces cerevisiae. [References: 30]
机译:uaY(c)462是构巢曲霉嘌呤分解代谢阳性调控基因的功能获得突变。该等位基因导致uaY控制的至少三个基因的组成型,高诱导性和去抑制型表达,这取决于靶基因的发生水平不同。 uaY(c)462等位基因根据已知的功能缺失等位基因进行了物理定位,并进行了测序。 uaY(c)462是222位密码子的一个碱基改变,导致丝氨酸变为亮氨酸改变。我们建议该突变映射在功能域中直接或间接参与UaY与转录装置的其他组件的相互作用。类似于丝氨酸222周围的基序的序列可以在啤酒酵母的PPR1和ADR1蛋白中发挥相似的作用。 [参考:30]

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