Literature DB >> 30690422

Electrochemical characterization of LHCII on graphite electrodes - Potential-dependent photoactivation and arrangement of complexes.

Paulina Piotrowska1, Magdalena Łazicka1, Adriana Palińska-Saadi2, Bohdan Paterczyk3, Łucja Kowalewska4, Joanna Grzyb5, Magdalena Maj-Żurawska6, Maciej Garstka7.   

Abstract

Light-dependent electrochemical properties of the light harvesting complexes of Photosystem II (LHCII) and the corresponding interactions with screen-printed graphite electrodes (GEs) are determined. No exogenous soluble redox mediators are used. LHCII isolated from spinach leaves are immobilized on GE by physical adsorption and through interactions with glutaraldehyde. Importantly, the insertion of LHCII into the pores of a GE is achieved by subjecting the electrode to specific potentials. Both trimeric and aggregated forms of LHCII located within the graphite layer retain their native structures. Voltammetric current peaks centred at ca. -230 and + 50 mV vs. Ag/AgCl (+94 and + 374 mV vs. NHE) limit the investigation of the reduction and oxidation processes of immobilized LHCII. An anodic photocurrent is generated in the LHCII-GE proportional to light intensity and can reach a value of 150 nA/cm2. Light-dependent charge separation in LHCII followed by electron transfer to the GE occurs only at potentials of above -200 mV vs. Ag/AgCl (+124 mV vs. NHE). Our results illustrate the importance of the structural proximity of LHCII and GE for photocurrent generation.
Copyright © 2019 Elsevier B.V. All rights reserved.

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Keywords:  77 K fluorescence; Chlorophyll-protein complexes; Electrochemistry; Graphite electrode; LHCII; Photocurrent

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Year:  2019        PMID: 30690422     DOI: 10.1016/j.bioelechem.2019.01.005

Source DB:  PubMed          Journal:  Bioelectrochemistry        ISSN: 1567-5394            Impact factor:   5.373


  1 in total

1.  The coupled photocycle of phenyl-p-benzoquinone and Light-Harvesting Complex II (LHCII) within the biohybrid system.

Authors:  Magdalena Łazicka; Adriana Palińska-Saadi; Paulina Piotrowska; Bohdan Paterczyk; Radosław Mazur; Magdalena Maj-Żurawska; Maciej Garstka
Journal:  Sci Rep       Date:  2022-07-27       Impact factor: 4.996

  1 in total

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