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通过扫描探针技术解析单金属蛋白的电子转移

Unravelling single metalloprotein electron transfer by scanning probe techniques.

作者信息

Alessandrini Andrea, Corni Stefano, Facci Paolo

机构信息

National Research Center, nanoStructures and bioSystems at Surfaces-S3 of CNR-INFM, Via G. Campi, 213/A, I-41100, Modena, Italy.

出版信息

Phys Chem Chem Phys. 2006 Oct 14;8(38):4383-97. doi: 10.1039/b607021c. Epub 2006 Aug 3.

Abstract

This review is intended to account for the experimental and theoretical achievements obtained in a period of about 15 years on the investigation of the electron transport through single redox metalloproteins by scanning probe techniques. A highly focussed research effort has been deployed by the scientists active in this particular field towards measuring and interpreting electronic current signals flowing via blue copper, redox metalloproteins (e.g. azurin). The field has taken a remarkable advantage of the use of electrochemically assisted scanning tunnelling microscope (EC-STM) which has allowed to probe single molecule signals under full control of all the potential values involved in the experiments. This experimental activity has both triggered more comprehensive theoretical interpretations and has been, in its turn, stimulated by theoreticians to test always new predictions. The authors hope to have succeeded in providing the reader with a valuable appraisal of this fascinating field.

摘要

本综述旨在阐述在大约15年的时间里,通过扫描探针技术研究电子通过单个氧化还原金属蛋白的传输所取得的实验和理论成果。活跃在这一特定领域的科学家们进行了高度集中的研究工作,致力于测量和解释流经蓝铜氧化还原金属蛋白(如天青蛋白)的电子电流信号。该领域显著受益于电化学辅助扫描隧道显微镜(EC-STM)的使用,它能够在实验中所有相关电位值的完全控制下探测单分子信号。这种实验活动既引发了更全面的理论解释,反过来也受到理论家的激励,以不断测试新的预测。作者希望成功地为读者提供对这个迷人领域的有价值评估。

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