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DNA backbone interactions impact the sequence specificity of DNA sulfur-binding domains: revelations from structural analyses

机译:DNA骨干相互作用会影响DNA硫结合结构域的序列特异性:来自结构分析的启示

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摘要

The sulfur atom of phosphorothioated DNA (PT-DNA) is coordinated by a surface cavity in the conserved sulfur-binding domain (SBD) of type IV restriction enzymes. However, some SBDs cannot recognize the sulfur atom in some sequence contexts. To illustrate the structural determinants for sequence specificity, we resolved the structure of SBD , from endonuclease SprMcrA, in complex with DNA of G GCC, G ATC and G AAC contexts. Structural and computational analyses explained why it binds the above PT-DNAs with an affinity in a decreasing order. The structural analysis of SBD –G GCC and SBD –G GCC, the latter only recognizes DNA of G GCC, revealed that a positively charged loop above the sulfur-coordination cavity electrostatically interacts with the neighboring DNA phosphate linkage. The structural analysis indicated that the DNA–protein hydrogen bonding pattern and weak non-bonded interaction played important roles in sequence specificity of SBD protein. Exchanges of the positively-charged amino acid residues with the negatively-charged residues in the loop would enable SBD to extend recognization for more PT-DNA sequences, implying that type IV endonucleases can be engineered to recognize PT-DNA in novel target sequences.
机译:硫代硫化DNA(PT-DNA)的硫原子通过IV型限制酶的保守硫结合结构域(SBD)中的表面腔协调。然而,一些SBD不能在一些序列背景下识别硫原子。为了说明序列特异性的结构决定因素,我们解决了与GCCC,G ATC和G AAC的DNA复合核酸酶Sprmcra的SBD的结构。结构和计算分析解释了为什么它以下降顺序与亲和力结合上述PT-DNA。 SBD -G GCC和SBD -G GCC的结构分析,后者仅识别G GCC的DNA,揭示了高于硫 - 协调腔的带正电的环与相邻的DNA磷酸酯键相互作用。结构分析表明,DNA-蛋白氢键样式和弱的非键合相互作用在SBD蛋白的序列特异性中起重要作用。用环路中的带负电的残基的带正电荷的氨基酸残基的交换将使SBD能够延长更多PT-DNA序列,这意味着IV型内切核酸酶可以设计成识别新的靶序列中的PT-DNA。

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