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Engineered split in Pfu DNA polymerase fingers domain improves incorporation of nucleotide gamma-phosphate derivative

机译:Pfu DNA聚合酶指结构域中的工程拆分可改善核苷酸γ-磷酸衍生物的掺入

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摘要

Using compartmentalized self-replication (CSR), we evolved a version of Pyrococcus furiosus (Pfu) DNA polymerase that tolerates modification of the gamma-phosphate of an incoming nucleotide. A Q484R mutation in alpha-helix P of the fingers domain, coupled with an unintended translational termination-reinitiation (split) near the finger tip, dramatically improve incorporation of a bulky gamma-phosphate-O-linker-dabcyl substituent. Whether synthesized by coupled translation from a bicistronic (-1 frameshift) clone, or reconstituted from separately expressed and purified fragments, split Pfu mutant behaves identically to wild-type DNA polymerase with respect to chromatographic behavior, steady-state kinetic parameters (for dCTP), and PCR performance. Although naturally-occurring splits have been identified previously in the finger tip region of T4 gp43 variants, this is the first time a split (in combination with a point mutation) has been shown to broaden substrate utilization. Moreover, this latest example of a split hyperthermophilic archaeal DNA polymerase further illustrates the modular nature of the Family B DNA polymerase structure.
机译:使用分隔的自我复制(CSR),我们进化了激烈热球菌(Pfu)DNA聚合酶的一种版本,该酶可耐受传入核苷酸的γ-磷酸修饰。手指域的α-螺旋P中的Q484R突变,加上指尖附近的意外翻译终止-重新初始化(分裂),可显着改善庞大的γ-磷酸-O-接头-dabcyl取代基的结合。无论是通过双顺反子(-1移码)克隆的偶联翻译合成,还是由单独表达和纯化的片段重构,分离的Pfu突变体在色谱行为,稳态动力学参数(用于dCTP)方面的行为均与野生型DNA聚合酶相同。和PCR性能。尽管先前已在T4 gp43变体的指尖区域中识别出自然发生的分裂,但这是第一次显示分裂(与点突变结合)可扩大底物利用率。此外,分裂的超嗜热古细菌DNA聚合酶的这一最新实例进一步说明了B族DNA聚合酶结构的模块性质。

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