Department of Biochemistry, Faculty of Life Sciences, Aligarh Muslim University, Aligarh, 202002, India.
Department of Biochemistry, Faculty of Life Sciences, Aligarh Muslim University, Aligarh, 202002, India.
Protein Expr Purif. 2023 Aug;208-209:106276. doi: 10.1016/j.pep.2023.106276. Epub 2023 May 6.
The polymerase chain reaction is an extensively used technique with numerous applications in the field of biological sciences. In addition to naturally occurring DNA polymerases with varying processivity and fidelity, genetically engineered recombinant DNA polymerases are also used in PCR. The Pfu-Sso7d, a fusion DNA polymerase, is obtained by the fusion of Sso7d, a small DNA binding protein, to the polymerase domain of the Pfu DNA polymerase. Pfu-Sso7d is known for its high processivity, efficiency, and fidelity. Expensive commercial variants of Pfu-Sso7d are sold under various trade names. Here, we report a quick, cost and time-efficient purification protocol and an optimized buffer system for Pfu-Sso7d. We evaluated precipitation efficiencies of varying concentrations of ethanol and acetone and compared the activities of the precipitated enzyme. Although both the solvents efficiently precipitated Pfu-Sso7d, acetone showed better precipitation efficiency. Purified Pfu-Sso7d showed excellent activity in the PCR of templates with varying lengths and GC contents. We also report a buffer system that works with Pfu-Sso7d as efficiently as commercially available buffers. This quick and efficient purification scheme and buffer system will provide researchers cost-efficient access to fusion polymerase.
聚合酶链反应是一种广泛应用于生物科学领域的技术。除了具有不同的持续性和保真度的天然存在的 DNA 聚合酶外,在 PCR 中还使用了经过基因工程改造的重组 DNA 聚合酶。Pfu-Sso7d 是一种融合 DNA 聚合酶,它是通过将 Sso7d(一种小的 DNA 结合蛋白)融合到 Pfu DNA 聚合酶的聚合酶结构域而获得的。Pfu-Sso7d 以其高持续性、效率和保真度而闻名。昂贵的商业变体 Pfu-Sso7d 以各种商品名出售。在这里,我们报告了一种快速、经济高效且省时的 Pfu-Sso7d 纯化方案和优化的缓冲液系统。我们评估了不同浓度乙醇和丙酮的沉淀效率,并比较了沉淀酶的活性。尽管两种溶剂都能有效地沉淀 Pfu-Sso7d,但丙酮显示出更好的沉淀效率。纯化的 Pfu-Sso7d 在具有不同长度和 GC 含量的模板的 PCR 中表现出优异的活性。我们还报告了一种缓冲液系统,它与商业上可用的缓冲液一样有效地与 Pfu-Sso7d 配合使用。这种快速高效的纯化方案和缓冲液系统将为研究人员提供具有成本效益的融合聚合酶。