Tuning the redox potential of tyrosine-histidine bioinspired assemblies

被引:0
|
作者
Emmanuel Odella
Thomas A. Moore
Ana L. Moore
机构
[1] Arizona State University,School of Molecular Sciences
来源
Photosynthesis Research | 2022年 / 151卷
关键词
Proton-coupled electron transfer; Tyrosine Z–His190 pair; Bioinspired benzimidazole-phenols; Infrared spectroelectrochemistry;
D O I
暂无
中图分类号
学科分类号
摘要
Photosynthesis powers our planet and is a source of inspiration for developing artificial constructs mimicking many aspects of the natural energy transducing process. In the complex machinery of photosystem II (PSII), the redox activity of the tyrosine Z (Tyrz) hydrogen-bonded to histidine 190 (His190) is essential for its functions. For example, the Tyrz–His190 pair provides a proton-coupled electron transfer (PCET) pathway that effectively competes against the back-electron transfer reaction and tunes the redox potential of the phenoxyl radical/phenol redox couple ensuring a high net quantum yield of photoinduced charge separation in PSII. Herein, artificial assemblies mimicking both the structural and redox properties of the Tyrz–His190 pair are described. The bioinspired constructs contain a phenol (Tyrz model) covalently linked to a benzimidazole (His190 model) featuring an intramolecular hydrogen bond which closely emulates the one observed in the natural counterpart. Incorporation of electron-withdrawing groups in the benzimidazole moiety systematically changes the intramolecular hydrogen bond strength and modifies the potential of the phenoxyl radical/phenol redox couple over a range of ~ 250 mV. Infrared spectroelectrochemistry (IRSEC) demonstrates the associated one-electron, one-proton transfer (E1PT) process upon electrochemical oxidation of the phenol. The present contribution provides insight regarding the factors controlling the redox potential of the phenol and highlights strategies for the design of futures constructs capable of transporting protons across longer distances while maintaining a high potential of the phenoxyl radical/phenol redox couple.
引用
收藏
页码:185 / 193
页数:8
相关论文
共 50 条
  • [21] Electronic doping and redox potential tuning of colloidal semiconductor nanocrystals
    Gamelin, Daniel
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2016, 251
  • [22] Formation and spectroscopic characterization of the dioxygen adduct of a heme-Cu complex possessing a cross-linked tyrosine-histidine mimic:: modeling the active site of cytochrome c oxidase
    Liu, JG
    Naruta, Y
    Tani, F
    Chishiro, T
    Tachi, Y
    CHEMICAL COMMUNICATIONS, 2004, (01) : 120 - 121
  • [23] Tuning the redox potential of riboflavin by zirconium phosphate in carbon paste electrodes
    Malinauskas, A
    Ruzgas, T
    Gorton, L
    BIOELECTROCHEMISTRY AND BIOENERGETICS, 1999, 49 (01): : 21 - 27
  • [24] Independent Tuning of the Band Gap and Redox Potential of Graphene Quantum Dots
    Yan, Xin
    Li, Binsong
    Cui, Xiao
    Wei, Qingshuo
    Tajima, Keisuke
    Li, Liang-shi
    JOURNAL OF PHYSICAL CHEMISTRY LETTERS, 2011, 2 (10): : 1119 - 1124
  • [25] Electronic Doping and Redox-Potential Tuning in Colloidal Semiconductor Nanocrystals
    Schimpf, Alina M.
    Knowles, Kathryn E.
    Carroll, Gerard M.
    Gamelin, Daniel R.
    ACCOUNTS OF CHEMICAL RESEARCH, 2015, 48 (07) : 1929 - 1937
  • [26] Reduction potential tuning of blue copper protein by introducing histidine analog at equatorial position
    Yu, Yang
    Marshall, Nicholas M.
    Garner, Dewain K.
    Lu, Yi
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2011, 242
  • [27] Tuning the redox potential of tetraphenylcyclobutadiene-cyclopentadienylnickel complexes through substitution.
    Craig, PR
    Ray, JM
    Trujillo, M
    Kirby, JP
    Miller, JR
    Michl, J
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2000, 220 : U527 - U527
  • [28] Redox potential tuning by mixed-ligand quadruply bonded dimolybdenum compounds
    Valdez, Nathalie
    Villagran, Dino
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2013, 245
  • [29] Redox potential tuning by redox-inactive cations in nature's water oxidizing catalyst and synthetic analogues
    Krewald, Vera
    Neese, Frank
    Pantazis, Dimitrios A.
    PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 2016, 18 (16) : 10739 - 10750
  • [30] TUNING THE REDOX POTENTIAL OF CYTOCHROME-C THROUGH SYNERGISTIC SITE REPLACEMENTS
    KOMARPANICUCCI, S
    BIXLER, J
    BAKKER, G
    SHERMAN, F
    MCLENDON, G
    JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1992, 114 (13) : 5443 - 5445