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Repeat 1 of TAL effectors affects target specificity for the base at position zero

机译:重复1的TAT效应器会影响零位零的靶特异性

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摘要

AvrBs3, the founding member of the Xanthomonas transcription-activator-like effectors (TALEs), is translocated into the plant cell where it localizes to the nucleus and acts as transcription factor. The DNA-binding domain of AvrBs3 consists of 17.5 nearly-identical 34 amino acid-repeats. Each repeat specifies binding to one base in the target DNA via amino acid residues 12 and 13 termed repeat variable diresidue (RVD). Natural target sequences of TALEs are generally preceded by a thymine (T-0), which is coordinated by a tryptophan residue (W232) in a degenerated repeat upstream of the canonical repeats. To investigate the necessity of T-0 and the conserved tryptophan for AvrBs3-mediated gene activation we tested TALE mutant derivatives on target sequences preceded by all possible four bases. In addition, we performed domain swaps with TalC from a rice pathogenic Xanthomonas because TalC lacks the tryptophan residue, and the TalC target sequence is preceded by cytosine. We show that T-0 works best and that T-0 specificity depends on the repeat number and overall RVD-composition. T-0 and W232 appear to be particularly important if the RVD of the first repeat is HD ('rep1 effect'). Our findings provide novel insights into the mechanism of T-0 recognition by TALE proteins and are important for TALE-based biotechnological applications
机译:AVRBS3,Xanthomonas转录激活剂样效应器(故事)的创始成员被易于膨胀到植物细胞中,其中它定位于细胞核并充当转录因子。 AVRBS3的DNA结合结构域由17.5个接近相同的34个氨基酸重复组成。每次重复指定通过氨基酸残基12和13重复变量Diresidue(RVD)结合靶DNA中的一个碱基。天然靶的缩小的缩小序列通常以胸腺嘧啶(T-0)在典型的重复上游的在典型重复上游的籽粒残留物(W232)中。为了探讨T-0的必要性和AVRBS3介导的基因激活的保守色氨酸,我们测试了TALE突变衍生物对所有可能的四个碱基的靶序列。此外,我们从水稻致病Xanthomonas进行了与滑石的域换流,因为滑石缺乏色氨酸残余物,并且滑石靶序列先于胞嘧啶。我们表明T-0最佳工作,T-0特异性取决于重复数量和整体RVD组合。如果第一次重复的RVD是HD('Rep1效果'),T-0和W232似乎特别重要。我们的研究结果提供了对T-0识别的机制的新颖见解,并且对基于故事的生物技术应用很重要

著录项

  • 来源
    《Nucleic Acids Research》 |2014年第11期|共10页
  • 作者

    Schreiber Tom; Bonas Ulla;

  • 作者单位

    Department of Genetics Martin Luther University Weinbergweg 10 06120 Halle (Saale) Germany;

    Department of Genetics Martin Luther University Weinbergweg 10 06120 Halle (Saale) Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

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