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首页> 外文期刊>Biochimica et biophysica acta: BBA: International journal of biochemistry, biophysics and molecular biololgy. Proteins and Proteomics >Site-directed chemical modification of archaeal Thermococcus litoralis Sh1B DNA polymerase: Acquired ability to read through template-strand uracils.
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Site-directed chemical modification of archaeal Thermococcus litoralis Sh1B DNA polymerase: Acquired ability to read through template-strand uracils.

机译:定点化学修饰古细菌Thercococus litoralis Sh1B DNA聚合酶:获得通过模板链尿嘧啶读取的能力。

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摘要

We present site-directed chemical modification (SDCM), a tool for engineering U-resistant archaeal DNA polymerases of family B. The Thermococcus litoralis Sh1B DNA polymerase (GenBank: GQ891548) was chosen as the object of the study. Similar to D.Tok, Kod1, Pfu, Tgo and other archaeal members of this family, the T. litoralis Sh1B DNA polymerase is a domain structured, proofreading-proficient enzyme that has the polymerization and 3'-->5' DNA exonucleolytic activities and contains N-terminally located highly conserved template-strand U-binding pocket. The tight binding of template uracil in the enzyme pocket during polymerization blocks the replication of DNA containing uracils. This effect can be alleviated by mutations in key amino acids of the U-binding pocket. We altered T. litoralis Sh1B DNA polymerase's ability to read through the template-strand uracils by applying SDCM. Specific modification of individual cysteine residues in U-binding pocket - targets introduced into certain positions by site-directed mutagenesis - enables the enzyme to effectively replicate DNA containing uracils. We demonstrate that the acquired resistance of chemically modified T. litoralis Sh1B DNA polymerase to DNA uracil correlates with its decreased affinity for template-strand uracil.
机译:我们提出了定点化学修饰(SDCM),一种用于工程化B族U抵抗性古细菌DNA聚合酶的工具。选择了立花热球菌Sh1B DNA聚合酶(GenBank:GQ891548)作为研究对象。与D.Tok,Kod1,Pfu,Tgo和该家族的其他古细菌成员相似,斜纹肌Sh1B DNA聚合酶是一种结构域结构,具有校对能力的酶,具有聚合作用和3'-> 5'DNA外切核酸酶活性并包含位于N末端的高度保守的模板链U结合袋。模板尿嘧啶在聚合过程中在酶口袋中的紧密结合阻止了含有尿嘧啶的DNA的复制。 U结合口袋关键氨基酸的突变可以减轻这种影响。我们通过应用SDCM改变了斜纹夜蛾Sh1B DNA聚合酶读取模板链尿嘧啶的能力。 U结合口袋中单个半胱氨酸残基的特异性修饰-通过定点诱变将其引入特定位置的靶标-使该酶能够有效复制含有尿嘧啶的DNA。我们证明,化学修饰的沿海虎杖Sh1B DNA聚合酶对DNA尿嘧啶的获得性抗性与其对模板链尿嘧啶的亲和力降低相关。

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