Molecular Assembly of Zinc Chlorophyll Derivatives
by Using Recombinant Light-Harvesting Polypeptides with His-tag and
Immobilization on a Gold Electrode
Posted on 2016-02-19 - 10:37
LH1-α
and -β polypeptides, which make up the light-harvesting
1 (LH1) complex of purple photosynthetic bacteria, along with bacteriochlorophylls,
have unique binding properties even for various porphyrin analogs.
Herein, we used the porphyrin analogs, Zn-Chlorin and the Zn-Chlorin
dimer, and examined their binding behaviors to the LH1-α variant,
which has a His-tag at the C-terminus (MBP-rubα-YH). Zn-Chlorin
and the Zn-Chlorin dimer could bind to MBP-rubα-YH and form
a subunit-type assembly, similar to that from the native LH1 complex.
These complexes could be immobilized onto Ni-nitrilotriacetic acid-modified
Au electrodes, and the cathodic photocurrent was successfully observed
by photoirradiation. Since Zn-Chlorins in this complex are too far
for direct electron transfer from the electrode, a contribution of
polypeptide backbone for efficient electron transfer was implied.
These findings not only show interesting properties of LH1-α
polypeptides but also suggest a clue to construct artificial photosynthesis
systems using these peptide materials.
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Sakai, Shunsuke; Noji, Tomoyasu; Kondo, Masaharu; Mizuno, Toshihisa; Dewa, Takehisa; Ochiai, Tsuyoshi; et al. (2016). Molecular Assembly of Zinc Chlorophyll Derivatives
by Using Recombinant Light-Harvesting Polypeptides with His-tag and
Immobilization on a Gold Electrode. ACS Publications. Collection. https://doi.org/10.1021/la400059h