4.7 Article

Insights into the catalytic mechanism of dehydrogenase BphB: A quantum mechanics/molecular mechanics study

期刊

CHEMOSPHERE
卷 208, 期 -, 页码 69-76

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.chemosphere.2018.05.063

关键词

Quantum mechanics/molecular mechanics; Polychlorinated biphenyl metabolites; Dehydrogenation; Electrostatic influence

资金

  1. NSFC (National Natural Science Foundation of China) [21577082]
  2. Taishan Scholars [ts201712003]
  3. National Major Science and Technology Program for Water Pollution Control and Treatment [2017ZX07202-002]

向作者/读者索取更多资源

The present study delineated the dehydrogenation mechanism of cis-2,3-dihydro-2,3-dihydroxybiphenyl (2,3-DDBPH) and cis-2,3-dihydro-2,3-dihydroxy-4,4'-dichlorobiphenyl (2,3-DD-4,4'-DBPH) by Pandoraea pnomenusa strain B-356 cis-2,3-dihydro-2,3-dihydroxybiphenyl dehydrogenase (BphB) in atomistic detail. The enzymatic process was investigated by a combined quantum mechanics/molecular mechanics (QM/MM) approach. Five different snapshots were extracted and calculated, which revealed that the Boltzmann-weighted average barriers of 2,3-DDBPH and 2,3-DD-4,4'-DBPH dehydrogenation processes are 10.7 and 11.5 kcal mol(-1), respectively. The established dehydrogenation mechanism provides new insight into the degradation processes of other chlorinated 2,3-DDBPH. In addition to Asn115, Ser142, and Lys149, the importance of Ile 89, Asn143, Pro184, Met 187, Thr189, and Lue 191 during the dehydrogenation process of 2,3-DDBPH and 2,3-DD-4,4'-DBPH were also highlighted to search for promising mutation targets for improving the catalytic efficiency of BphB. (C) 2018 Published by Elsevier Ltd.

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