Gatius Angela Gala Morena, Piaz Fabrizio Dal, Hochkoeppler Alejandro
Department of Pharmacy and Biotechnology, University of Bologna, Viale Risorgimento 4, 40136, Bologna, Italy.
Department of Medicine, University of Salerno, Via Giovanni Paolo II 132, 84084, Fisciano, SA, Italy.
Protein J. 2017 Dec;36(6):453-460. doi: 10.1007/s10930-017-9740-z.
A structural and kinetic characterization of a fragment of the HoLaMa DNA polymerase is presented here. In particular, a truncated form of HoLaMa, devoid of a consistent portion of the thumb domain, was isolated and purified. This HoLaMa fragment, denoted as ΔNter-HoLaMa, is surprisingly competent in catalyzing DNA extension, albeit featuring a k one order of magnitude lower than the corresponding kinetic constant of its full-length counterpart. The conformational rearrangements, if any, of enzyme tryptophanes triggered by DNA binding or extension were assayed under pre-steady-state conditions. The fluorescence of HoLaMa tryptophanes was found to significantly change upon DNA binding and extension. On the contrary, no fluorescence changes of ΔNter-HoLaMa tryptophanes were detected under the same conditions, suggesting that major conformational transitions are not required for DNA binding or extension by this truncated DNA polymerase.
本文介绍了HoLaMa DNA聚合酶片段的结构和动力学特征。具体而言,分离并纯化了一种截短形式的HoLaMa,其缺少拇指结构域的一个连续部分。这个HoLaMa片段,记为ΔNter-HoLaMa,令人惊讶地能够催化DNA延伸,尽管其催化常数k比全长对应物的相应动力学常数低一个数量级。在预稳态条件下测定了由DNA结合或延伸引发的酶色氨酸的构象重排(如果有的话)。发现HoLaMa色氨酸的荧光在DNA结合和延伸时会发生显著变化。相反,在相同条件下未检测到ΔNter-HoLaMa色氨酸的荧光变化,这表明这种截短的DNA聚合酶在DNA结合或延伸时不需要主要的构象转变。