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A tryptophan-rich peptide acts as a transcription activation domain

机译:富含色氨酸的肽充当转录激活域

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Background Eukaryotic transcription activators normally consist of a sequence-specific DNA-binding domain (DBD) and a transcription activation domain (AD). While many sequence patterns and motifs have been defined for DBDs, ADs do not share easily recognizable motifs or structures.Results We report herein that the N-terminal domain of yeast valyl-tRNA synthetase can function as an AD when fused to a DNA-binding protein, LexA, and turn on reporter genes with distinct LexA-responsive promoters. The transcriptional activity was mainly attributed to a five-residue peptide, WYDWW, near the C-terminus of the N domain. Remarkably, the pentapeptide per se retained much of the transcriptional activity. Mutations which substituted tryptophan residues for both of the non-tryptophan residues in the pentapeptide (resulting in W5) significantly enhanced its activity (~1.8-fold), while mutations which substituted aromatic residues with alanine residues severely impaired its activity. Accordingly, a much more active peptide, pentatryptophan (W7), was produced, which elicited ~3-fold higher activity than that of the native pentapeptide and the N domain. Further study indicated that W_7 mediates transcription activation through interacting with the general transcription factor, TFIIB.Conclusions Since W_7 shares no sequence homology or features with any known transcription activators, it may represent a novel class of AD.
机译:背景真核转录激活因子通常由序列特异性DNA结合域(DBD)和转录激活域(AD)组成。虽然已经为DBD定义了许多序列模式和基序,但AD并没有易于识别的基序或结构。结果我们在本文中报道,酵母缬氨酰tRNA合成酶的N末端结构域与DNA结合时可以充当AD。蛋白,LexA,并使用独特的LexA反应启动子打开报告基因。转录活性主要归因于N结构域C端附近的五残基肽WYDWW。值得注意的是,五肽本身保留了许多转录活性。用五肽中的两个非色氨酸残基取代色氨酸残基的突变(导致W5)显着增强了其活性(约1.8倍),而用丙氨酸残基取代芳族残基的突变则严重削弱了其活性。因此,产生了活性更高的肽五色氨酸(W7),其活性比天然五肽和N结构域高约3倍。进一步的研究表明,W_7通过与通用转录因子TFIIB相互作用来介导转录激活。结论由于W_7与任何已知的转录激活剂均不具有序列同源性或特征,因此它可能代表了一类新颖的AD。

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