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Probing conformational change of T7 RNA polymerase and DNA complex by solid-state nanopores

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【作者】 童鑫胡蕊李晓晴赵清

【Author】 Xin Tong;Rui Hu;Xiaoqing Li;Qing Zhao;State Key Laboratory for Mesoscopic Physics and Electron Microscopy Laboratory, School of Physics, Peking University;Collaborative Innovation Center of Quantum Matter;

【通讯作者】 赵清;

【机构】 State Key Laboratory for Mesoscopic Physics and Electron Microscopy Laboratory, School of Physics, Peking UniversityCollaborative Innovation Center of Quantum Matter

【摘要】 Proteins are crucial to most biological processes, such as enzymes, and in various catalytic processes a dynamic motion is required. The dynamics of protein are embodied as a conformational change, which is closely related to the flexibility of protein. Recently, nanopore sensors have become accepted as a low cost and high throughput method to study the features of proteins. In this article, we used a SiN nanopore device to study the flexibility of T7 RNA polymerase(RNAP) and its complex with DNA promoter. By calculating full-width at half-maximum(FWHM) of Gaussian fits to the blockade histograms, we found that T7 RNAP becomes more flexible after binding DNA promoter. Moreover, the distribution of fractional current blockade suggests that flexibility alters due to a breath-like change of the volume.

【Abstract】 Proteins are crucial to most biological processes, such as enzymes, and in various catalytic processes a dynamic motion is required. The dynamics of protein are embodied as a conformational change, which is closely related to the flexibility of protein. Recently, nanopore sensors have become accepted as a low cost and high throughput method to study the features of proteins. In this article, we used a SiN nanopore device to study the flexibility of T7 RNA polymerase(RNAP) and its complex with DNA promoter. By calculating full-width at half-maximum(FWHM) of Gaussian fits to the blockade histograms, we found that T7 RNAP becomes more flexible after binding DNA promoter. Moreover, the distribution of fractional current blockade suggests that flexibility alters due to a breath-like change of the volume.

【基金】 Project supported by the National Natural Science Foundation of China(Grant Nos.51622201,91733301,and 61571015)
  • 【文献出处】 Chinese Physics B ,中国物理B , 编辑部邮箱 ,2018年11期
  • 【分类号】TP212;Q75
  • 【被引频次】2
  • 【下载频次】25
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