Academic Thesis

Basic information

Name Yagi Yoichiro
Belonging department
Occupation name
researchmap researcher code 1000229028
researchmap agency Okayama University of Science

Title

Biomolecular Chemical Simulations toward Elucidation of the Enantioselectivity and Reactivity of Lipases in Organic Synthesis

Bibliography Type

Joint Author

Author

Yoichiro Yagi, Takatomo Kimura, Makoto Kamezawa, Yoshinobu Naoshima

Summary

We are presently continuing biomolecular chemical simulations for Burkholderia cepacia lipase (BCL) and Candida antarctica lipase typeB (CALB) to predict their enantioselectivity and reactivity toward various organic compounds. In this paper, we describe molecular dynamics (MD) and fragment molecular orbital (FMO) calculations on the complexes of CALB with primary and secondary alcohol esters. For esters with high enantioselectivity, the fast reacting enantiomer of esters is located near the active site of CALB, whereas the slow reacting enantiomer of esters moves away from the active site of CALB. On the other hand, for the esters with low enantioselectivity, we found that both (R)- and (S)-enantiomers of esters remain the active site of CALB. The FMO computations indicate that for the esters with high enantioselectivity, each fast reacting enantiomer shows strong interactions with some particular amino acid residues including Thr40, whereas for the esters with low enantioselectivity, both (R)- and (S)-enantiomers interact with identical amino acid residues including Thr40. It is predictable that Thr40 in CALB plays an important role in the chiral recognition of enantiomers through the lipase-catalyzed biotransformations.

Magazine(name)

Chem-Bio Informatics Journal (CBI Journal)

Publisher

Chem-Bio Informatics Society (CBI)

Volume

18

Number Of Pages

StartingPage

21

EndingPage

31

Date of Issue

2018/02

Referee

Exist

Invited

Not exist

Language

English

Thesis Type

Research papers (academic journals)

ISSN

DOI

NAID

10.1273/cbij.18.21

PMID

URL

J-GLOBAL ID

arXiv ID

ORCID Put Code

DBLP ID