Disassembling and bleaching of chloride-free pharaonis halorhodopsin by octyl-β-glucoside

Megumi Kubo, Maki Sato, Tomoyasu Aizawa, Chojiro Kojima, Naoki Kamo, Mineyuki Mizuguchi, Keiichi Kawano, Makoto Demura*

*この論文の責任著者

研究成果: ジャーナルへの寄稿学術論文査読

10 被引用数 (Scopus)

抄録

Natronomonas (Natronobacterium) pharaonis halorhodopsin (NpHR) is a transmembrane, seven-helix retinal protein of the archaeal bacterium and acts as an inward light-driven chloride ion pump in the membrane. The denaturation process of NpHR solubilized with n-octyl-β-o-glucopyranoside (OG) was investigated to clarify the effects of the chloride ion and pH on the stability and bleaching of the NpHR chromophore. Initially, active NpHR solubilized with n-dodecyl-β-D-maltopyranoside (DM) was obtained from the recombinant halo-opsin (NpHO), which was expressed in Escherichia coli cells, by adding all-trans retinal to the medium. Apparent molecular weight of the active NpHR solubilized with DM, which was determined by gel-filtration chromatography and dynamic light scattering, indicated the oligomeric state. The bleaching of NpHR in the dark by the addition of 50 mM OG in the presence and absence of chloride was investigated. In the presence of 256 mM NaCl, the bleaching of NpHR was strongly inhibited. On the other hand, in the absence of NaCl, an immediate decrease of absorbance at 600 nm was observed. Stopped-flow rapid-mixing analysis clarified the bleaching process in the absence of chloride as DM-NpHR (oligomeric) ↔ OG-NpHR (disassembled) ↔ intermediate -→ NpHO and free retinal, and each rate constant were determined. The formation of an intermediate (450 nm) in the dark was found to be strongly dependent on pH, as well as anion and detergent concentrations. The disassembling and protonation of a Schiff base corresponding to the bleaching intermediate is also discussed.

本文言語英語
ページ(範囲)12923-12931
ページ数9
ジャーナルBiochemistry
44
39
DOI
出版ステータス出版済み - 2005/10/04

ASJC Scopus 主題領域

  • 生化学

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