Department of Chemistry and Chemical Biology, Technical University of Dortmund, Otto-Hahn-Str. 4a, 44227, Dortmund, Germany.
Sci Rep. 2017 Nov 8;7(1):15067. doi: 10.1038/s41598-017-15361-1.
Transcription activator-like effectors (TALEs) are DNA major-groove binding proteins widely used for genome targeting. TALEs contain an N-terminal region (NTR) and a central repeat domain (CRD). Repeats of the CRD selectively recognize each one DNA nucleobase, offering programmability. Moreover, repeats with selectivity for 5-methylcytosine (5mC) and its oxidized derivatives can be designed for analytical applications. However, both TALE domains also nonspecifically interact with DNA phosphates via basic amino acids. To enhance the 5mC selectivity of TALEs, we aimed to decrease the nonselective binding energy of TALEs. We substituted basic amino acids with alanine in the NTR and identified TALE mutants with increased selectivity. We then analysed conserved, DNA phosphate-binding KQ diresidues in CRD repeats and identified further improved mutants. Combination of mutations in the NTR and CRD was highly synergetic and resulted in TALE scaffolds with up to 4.3-fold increased selectivity in genomic 5mC analysis via affinity enrichment. Moreover, transcriptional activation in HEK293T cells by a TALE-VP64 construct based on this scaffold design exhibited a 3.5-fold increased 5mC selectivity. This provides perspectives for improved 5mC analysis and for the 5mC-conditional control of TALE-based editing constructs in vivo.
转录激活因子样效应物(TALEs)是一种广泛用于基因组靶向的 DNA 大沟结合蛋白。TALEs 包含一个 N 端结构域(NTR)和一个中央重复结构域(CRD)。CRD 的重复序列选择性地识别每个 DNA 碱基,具有可编程性。此外,可以设计具有选择性识别 5-甲基胞嘧啶(5mC)及其氧化衍生物的重复序列,用于分析应用。然而,TALE 结构域的重复序列和 N 端结构域都通过碱性氨基酸与 DNA 磷酸基团非特异性相互作用。为了提高 TALEs 对 5mC 的选择性,我们旨在降低 TALEs 的非特异性结合能。我们在 NTR 中用丙氨酸取代碱性氨基酸,并鉴定出具有更高选择性的 TALE 突变体。然后,我们分析了 CRD 重复序列中保守的、与 DNA 磷酸基团结合的 KQ 二残基,并鉴定出进一步改进的突变体。NTR 和 CRD 中的突变组合具有高度协同作用,导致 TALE 支架在通过亲和富集进行基因组 5mC 分析时的选择性提高了 4.3 倍。此外,基于该支架设计的 TALE-VP64 构建体在 HEK293T 细胞中的转录激活显示出 5mC 选择性提高了 3.5 倍。这为改进 5mC 分析以及在体内条件性控制基于 TALE 的编辑构建体提供了新的视角。