Links between peptides and Mn oxide: nano-sized manganese oxide embedded in a peptide matrix
- Authors
- Najafpour, Mohammad Mahdi; Madadkhani, Sepideh; Akbarian, Somayyeh; Zand, Zahra; Holynska, Malgorzata; Kompany-Zareh, Mohsen; Tatsuya, Tomo; Singh, Jitendra Pal; Chae, Keun Hwa; Allakhverdiev, Suleyman I.
- Issue Date
- 2018-06-21
- Publisher
- ROYAL SOC CHEMISTRY
- Citation
- NEW JOURNAL OF CHEMISTRY, v.42, no.12, pp.10067 - 10077
- Abstract
- Herein we report on a poly-peptide/Mn oxide nanocomposite as a model for the water-oxidizing catalyst in Photosystem II. The material is obtained by the reaction of poly-l-tyrosine, Mn(OAc)(2)4H(2)O and KMnO4. HRTEM images of the nanocomposite indicate the presence of nanoparticles dispersed in a poly-l-tyrosine matrix with no crystalline phases. A broad peak at approximate to 400-550 nm in the UV-visible spectrum is related to Mn oxide formation. X-ray absorption studies suggest that the Mn atoms are in the oxidation state of +IV and a coordination number of around three was obtained for Mn in the structure. The water-oxidizing activity of the material under electrochemical conditions was also investigated. Electrochemical experiments proved the presence of Mn(iv) oxide. Determination of oxygen coupled to electrochemistry revealed the role of poly-l-tyrosine in decreasing the overpotential for water oxidation. In the next step, the interaction of the nanocomposite and imidazole as a model for the tyrosine 161 and histidine 190 residues in Photosystem II was studied with fluorescence spectroscopy using the multivariate curve resolution-alternating least squares method.
- Keywords
- COUPLED ELECTRON-TRANSFER; WATER-OXIDIZING COMPLEX; SQUARES MCR-ALS; CHLOROPHYLL-A FLUORESCENCE; PROMISING STRUCTURAL MODEL; OXYGEN-EVOLVING COMPLEX; PHOTOSYSTEM-II; CATALYTIC-ACTIVITY; CALCIUM OXIDE; ENGINEERED POLYPEPTIDE; COUPLED ELECTRON-TRANSFER; WATER-OXIDIZING COMPLEX; SQUARES MCR-ALS; CHLOROPHYLL-A FLUORESCENCE; PROMISING STRUCTURAL MODEL; OXYGEN-EVOLVING COMPLEX; PHOTOSYSTEM-II; CATALYTIC-ACTIVITY; CALCIUM OXIDE; ENGINEERED POLYPEPTIDE; nano-sized manganese oxide; nanocomposite; water-oxidizing catalyst; X-ray absorption
- ISSN
- 1144-0546
- URI
- https://pubs.kist.re.kr/handle/201004/121242
- DOI
- 10.1039/c8nj02119h
- Appears in Collections:
- KIST Article > 2018
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