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The identity of the discriminator base has an impact on CCA addition

机译:鉴别基的身份对添加CCA有影响

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CCA-adding enzymes synthesize and maintain the C-C-A sequence at the tRNA 3'-end, generating the attachment site for amino acids. While tRNAs are the most prominent substrates for this polymerase, CCA additions on non-tRNA transcripts are described as well. To identify general features for substrate requirement, a pool of randomized transcripts was incubated with the human CCA-adding enzyme. Most of the RNAs accepted for CCA addition carry an acceptor stem-like terminal structure, consistent with tRNA as the main substrate group for this enzyme. While these RNAs show no sequence conservation, the position upstream of the CCA end was in most cases represented by an adenosine residue. In tRNA, this position is described as discriminator base, an important identity element for correct aminoacylation. Mutational analysis of the impact of the discriminator identity on CCA addition revealed that purine bases (with a preference for adenosine) are strongly favoured over pyrimidines. Furthermore, depending on the tRNA context, a cytosine discriminator can cause a dramatic number of misincorporations during CCA addition. The data correlate with a high frequency of adenosine residues at the discriminator position observed in vivo. Originally identified as a prominent identity element for aminoacylation, this position represents a likewise important element for efficient and accurate CCA addition.
机译:添加CCA的酶在tRNA 3'端合成并维持C-C-A序列,从而产生氨基酸的附着位点。尽管tRNA是该聚合酶最主要的底物,但也描述了在非tRNA转录本上添加CCA的方法。为了确定底物需求的一般特征,将随机转录本的库与添加人CCA的酶一起孵育。接受CCA添加的大多数RNA都带有受体茎样末端结构,与tRNA作为该酶的主要底物基团一致。尽管这些RNA没有显示出序列保守性,但在大多数情况下,CCA末端的上游位置由腺苷残基表示。在tRNA中,该位置被描述为区分基,这是正确氨基酰化的重要同一性元素。鉴别特征对CCA添加的影响的突变分析显示,嘌呤碱基(偏爱腺苷)比嘧啶更受青睐。此外,取决于tRNA的背景,胞嘧啶鉴别剂可在CCA添加过程中引起大量的错误掺入。数据与体内观察到的鉴别位点的高频率腺苷残基相关。最初被确定为氨基酰化反应的重要身份元素,该位置代表了有效,准确地添加CCA的同样重要的元素。

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