TY - JOUR
T1 - π–π Stacking Interaction in an Oxidized CuII–Salen Complex with a Side-Chain Indole Ring
T2 - An Approach to the Function of the Tryptophan in the Active Site of Galactose Oxidase
AU - Oshita, Hiromi
AU - Suzuki, Takashi
AU - Kawashima, Kyohei
AU - Abe, Hitoshi
AU - Tani, Fumito
AU - Mori, Seiji
AU - Yajima, Tatsuo
AU - Shimazaki, Yuichi
N1 - Funding Information:
This work was supported in part by Grants-in-Aid for Scientific Research (Nos. 25410060 and 16K05716 to Y.S., and No. 18K05072 to S.M.) from the Ministry of Education, Culture, Sports, Science, and Technology of Japan, and the Cooperative Research Program of “Network Joint Research Center for Materials and Devices” (Institute for Materials Chemistry and Engineering, Kyushu University). This work was also supported by a Grant-in-Aid for Scientific Research on Innovative Areas “Precise Formation of a Catalyst Having a Specified Field for Use in Extremely Difficult Substrate Conversion Reactions” from MEXT, Japan (18H04233) to S.M. The generous allotment of computation time from the Research Center for Computational Science (RCCS), the National Institutes of Natural Sciences, Japan, is also gratefully acknowledged. The XAS study was carried out under the approval of PF-PAC No. 2016T003 to H.O.
Publisher Copyright:
© 2019 Wiley-VCH Verlag GmbH & Co. KGaA, Weinheim
PY - 2019/6/7
Y1 - 2019/6/7
N2 - In order to gain new insights into the effect of the π–π stacking interaction of the indole ring with the CuII–phenoxyl radical as seen in the active form of galactose oxidase, we have prepared a CuII complex of a methoxy-substituted salen-type ligand, containing a pendent indole ring on the dinitrogen chelate backbone, and characterized its one-electron-oxidized forms. The X-ray crystal structures of the oxidized CuII complex exhibited the π–π stacking interaction of the indole ring mainly with one of the two phenolate moieties. The phenolate moiety in close contact with the indole moiety showed the characteristic phenoxyl radical structural features, indicating that the indole ring favors the π–π stacking interaction with the phenoxyl radical. The UV/Vis/NIR spectra of the oxidized CuII complex with the pendent indole ring was significantly different from those of the complex without the side-chain indole ring, and the absorption and CD spectra exhibited a solvent dependence, which is in line with the phenoxyl radical–indole stacking interaction in solution. The other physicochemical results and theoretical calculations strongly support that the indole ring, as an electron donor, stabilizes the phenoxyl radical by the π–π stacking interaction.
AB - In order to gain new insights into the effect of the π–π stacking interaction of the indole ring with the CuII–phenoxyl radical as seen in the active form of galactose oxidase, we have prepared a CuII complex of a methoxy-substituted salen-type ligand, containing a pendent indole ring on the dinitrogen chelate backbone, and characterized its one-electron-oxidized forms. The X-ray crystal structures of the oxidized CuII complex exhibited the π–π stacking interaction of the indole ring mainly with one of the two phenolate moieties. The phenolate moiety in close contact with the indole moiety showed the characteristic phenoxyl radical structural features, indicating that the indole ring favors the π–π stacking interaction with the phenoxyl radical. The UV/Vis/NIR spectra of the oxidized CuII complex with the pendent indole ring was significantly different from those of the complex without the side-chain indole ring, and the absorption and CD spectra exhibited a solvent dependence, which is in line with the phenoxyl radical–indole stacking interaction in solution. The other physicochemical results and theoretical calculations strongly support that the indole ring, as an electron donor, stabilizes the phenoxyl radical by the π–π stacking interaction.
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U2 - 10.1002/chem.201900733
DO - 10.1002/chem.201900733
M3 - Article
C2 - 30912194
AN - SCOPUS:85065760354
SN - 0947-6539
VL - 25
SP - 7649
EP - 7658
JO - Chemistry - A European Journal
JF - Chemistry - A European Journal
IS - 32
ER -