Immobilization of light-harvesting chlorophyll a/b complex (LHCIIb) : studied by surface plasmon field-enhanced fluorescence spectroscopy
Langmuir. Bd. 24. H. 17. Washington, DC: ACS Publ. 2008 S. 9661 - 9667
Erscheinungsjahr: 2008
ISBN/ISSN: 0743-7463
Publikationstyp: Zeitschriftenaufsatz
Sprache: Englisch
Doi/URN: 10.1021/la801143e
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Inhaltszusammenfassung
The major light-harvesting chlorophyll a/b complex (LHCIIb) of the photosynthetic apparatus in green plants can be viewed as a protein scaffold binding and positioning a large number of pigment molecules that engage in rapid excitation energy transfer. This property makes LHCIIb potentially interesting as a light harvester (or a model thereof) in photoelectronic applications. Such applications Would require the immobilization of LHCIIb (or similar dye-protein complexes) on a solid surface. In...The major light-harvesting chlorophyll a/b complex (LHCIIb) of the photosynthetic apparatus in green plants can be viewed as a protein scaffold binding and positioning a large number of pigment molecules that engage in rapid excitation energy transfer. This property makes LHCIIb potentially interesting as a light harvester (or a model thereof) in photoelectronic applications. Such applications Would require the immobilization of LHCIIb (or similar dye-protein complexes) on a solid surface. In this work, the immobilization of recombinant LHCIIb is tested and optimized on functionalized gold surfaces via a histidine(6) tag (His tag) in the protein moiety. Immobilization efficiency and kinetics are analyzed by using surface plasmon resonance (SPR) and surface plasmon field-enhanced fluorescence spectroscopy (SPFS). The latter was also used to assess the integrity of immobilized LHCIIb by recording Chl b-sensitized Chl a emission spectra. Since His tags have been included in a substantial number of recombinant proteins, the immobilization technique developed here for LHCIIb presumably can be extended to a large range of other membrane and water-soluble proteins.» weiterlesen» einklappen
Autoren
Klassifikation
DFG Fachgebiet:
2.12 - Pflanzenwissenschaften
DDC Sachgruppe:
Pflanzen (Botanik)