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Accurate Calculation of Electric Fields Inside Enzymes

  • X. Wang
  • , X. He*
  • , J. Z.H. Zhang
  • *此作品的通讯作者

科研成果: 书/报告/会议事项章节章节同行评审

摘要

The specific electric field generated by a protease at its active site is considered as an important source of the catalytic power. Accurate calculation of electric field at the active site of an enzyme has both fundamental and practical importance. Measuring site-specific changes of electric field at internal sites of proteins due to, eg, mutation, has been realized by using molecular probes with C[dbnd]O or C[tbnd]N groups in the context of vibrational Stark effect. However, theoretical prediction of change in electric field inside a protein based on a conventional force field, such as AMBER or OPLS, is often inadequate. For such calculation, quantum chemical approach or quantum-based polarizable or polarized force field is highly preferable. Compared with the result from conventional force field, significant improvement is found in predicting experimentally measured mutation-induced electric field change using quantum-based methods, indicating that quantum effect such as polarization plays an important role in accurate description of electric field inside proteins. In comparison, the best theoretical prediction comes from fully quantum mechanical calculation in which both polarization and inter-residue charge transfer effects are included for accurate prediction of electrostatics in proteins.

源语言英语
主期刊名Computational Approaches for Studying Enzyme Mechanism Part B
出版商Academic Press Inc.
45-72
页数28
DOI
出版状态已出版 - 2016

出版系列

姓名Methods in Enzymology
578
ISSN(印刷版)0076-6879
ISSN(电子版)1557-7988

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