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DNA 聚合酶作为分子马达和泵。

DNA polymerase as a molecular motor and pump.

机构信息

Department of Chemistry and ‡Department of Bioengineering, The Pennsylvania State University , University Park, Pennsylvania 16802, United States .

出版信息

ACS Nano. 2014 Mar 25;8(3):2410-8. doi: 10.1021/nn405963x. Epub 2014 Mar 6.

Abstract

DNA polymerase is responsible for synthesizing DNA, a key component in the running of biological machinery. Using fluorescence correlation spectroscopy, we demonstrate that the diffusive movement of a molecular complex of DNA template and DNA polymerase enhances during nucleotide incorporation into the growing DNA template. The diffusion coefficient of the complex also shows a strong dependence on its inorganic cofactor, Mg2+ ions. When exposed to gradients of either nucleotide or cofactor concentrations, an ensemble of DNA polymerase complex molecules shows collective movement toward regions of higher concentrations. By immobilizing the molecular complex on a patterned gold surface, we demonstrate the fabrication of DNA polymerase-powered fluid pumps. These miniature pumps are capable of transporting fluid and tracer particles in a directional manner with the pumping speed increasing in the presence of the cofactor. The role of DNA polymerase as a micropump opens up avenues for designing miniature fluid pumps using enzymes as engines.

摘要

DNA 聚合酶负责合成 DNA,这是生物机器运行的关键组成部分。使用荧光相关光谱法,我们证明了在核苷酸掺入生长中的 DNA 模板时,DNA 模板和 DNA 聚合酶的分子复合物的扩散运动增强。该复合物的扩散系数也与其无机辅因子 Mg2+离子表现出很强的依赖性。当暴露于核苷酸或辅因子浓度梯度时,一组 DNA 聚合酶复合物分子会朝着浓度较高的区域进行集体运动。通过将分子复合物固定在图案化的金表面上,我们展示了 DNA 聚合酶驱动的流体泵的制造。这些微型泵能够以定向的方式运输流体和示踪粒子,并且在存在辅因子的情况下泵送速度会增加。DNA 聚合酶作为微泵的作用为使用酶作为发动机设计微型流体泵开辟了途径。

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