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1.
J Phys Chem B ; 117(33): 9785-92, 2013 Aug 22.
Article in English | MEDLINE | ID: mdl-23888886

ABSTRACT

The photosynthetic photosystem I reaction center complex (PSI-RC), which has a molecular diameter of 21 nm with 100 pigments, was incorporated into silica nanopores with a 100-nm diameter that penetrates an alumina plate of 60-µm thickness to make up an inorganic-biological hybrid photocell. PSI-RCs, purified from a thermophilic cyanobacterium, were stable inside the nanopores and rapidly photoreduced a mediator dye methyl viologen. The reduced dye was more stable inside nanopores suggesting the decrease of dissolved oxygen. The analysis by a cryogenic electron spin paramagnetic resonance indicated the oriented arrangement of RCs inside the 100-nm nanopores, with their surface parallel to the silica wall and perpendicular to the plane of the alumina plate. PSI RC complex in the semicrystalline orientation inside silica nanopores can be a new type of light energy conversion unit to supply strong reducing power selectively to other molecules inside or outside nanopores.


Subject(s)
Aluminum Oxide/chemistry , Nanopores , Photosystem I Protein Complex/chemistry , Silicon Dioxide/chemistry , Cyanobacteria/metabolism , Electron Spin Resonance Spectroscopy , Oxidation-Reduction , Paraquat/chemistry , Photosystem I Protein Complex/metabolism
2.
Langmuir ; 27(2): 705-13, 2011 Jan 18.
Article in English | MEDLINE | ID: mdl-21171572

ABSTRACT

An oxygen-evolving photosynthetic reaction center complex (PSII) was adsorbed into nanopores in SBA, a mesoporous silica compound. We purified the dimer of PSII complex from a thermophilic cyanobacterium, Thermosynechococcus vulcanus, which grows optimally at 57 °C. The thermally stable PSII dimeric complex has a diameter of 20 nm and a molecular mass of 756 kDa and binds more than 60 chlorophylls. The SBA particles, with average internal pore diameters of 15 nm (SBA(15)) and 23 nm (SBA(23)), adsorbed 4.7 and 15 mg of PSII/g SBA, respectively. Measurement with a confocal laser-scanning microscope indicated the adsorption of PSII to the surface and the inner space of the SBA(23) particles, indicating the adsorption of PSII into the 23 nm silica nanopores. PSII did not bind to the inner pores of SBA(15). PSII bound to SBA(23) showed the high and stable activity of a photosynthetic oxygen-evolving reaction, indicating the light-driven electron transport from water to the quinone molecules added in the outer medium. The PSII-SBA conjugate can be a new material for photosensors and artificial photosynthetic systems.


Subject(s)
Nanoparticles/chemistry , Oxygen/chemistry , Photosystem II Protein Complex/chemistry , Serum Albumin, Bovine/chemistry , Silicon Dioxide/chemistry , Adsorption , Animals , Cattle , Oxygen/metabolism , Particle Size , Photochemistry , Photosystem II Protein Complex/metabolism , Porosity , Surface Properties
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