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Conceptual translation of timeless reveals alternative initiating methionines in Drosophila.

机译:永恒的概念翻译揭示了果蝇中的其他起始蛋氨酸。

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摘要

We have sequenced genomic fragments which encode the N-terminus of the TIMELESS (TIM) clock protein in Drosophila simulans and D. yakuba. We observe that in these two species, the initiating methionine appears to lie downstream of the one proposed to encode the translational start inD.melanogaster, thereby truncating the N-terminus by 23 amino acids. We then sequenced the corresponding 5'fragment in a number of D. melanogaster individuals from different strains. We observed a polymorphism which strongly suggests that the originally proposed start site cannot be utilised in some individuals, and that these flies will initiate translation of TIM at the downstream ATG. Given the current interest in TIM regulation in D. melanogaster, it is important to correctly define the N-terminus in this species.
机译:我们已测序的基因组片段编码果蝇simulans和D. yakuba中的TIMELESS(TIM)时钟蛋白的N端。我们观察到,在这两个物种中,起始蛋氨酸似乎位于拟议的编码黑腹果蝇的翻译起始位点的下游,从而将N末端截短了23个氨基酸。然后,我们在来自不同菌株的许多D. melanogaster个体中对相应的5'片段进行了测序。我们观察到一种多态性,该多态性强烈暗示最初提出的起始位点不能在某些个体中使用,并且这些蝇将在下游ATG处引发TIM的翻译。鉴于目前对黑腹果蝇(D. melanogaster)TIM调控的兴趣,正确定义该物种的N端非常重要。

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