4.5 Article

Mistic-fused expression of algal rhodopsins in Escherichia coli and its photochemical properties

Journal

BIOCHIMICA ET BIOPHYSICA ACTA-GENERAL SUBJECTS
Volume 1850, Issue 9, Pages 1694-1703

Publisher

ELSEVIER SCIENCE BV
DOI: 10.1016/j.bbagen.2015.04.002

Keywords

Rhodopsin; Bacteriorhodopsin; Algal rhodopsin; Proton transfer; Ion channel

Funding

  1. Research Foundation of Korea [2011-0012320, 2011-220-C00057, 2014R1A1A2008821, 2013R1A1A2064883]
  2. Ministry of Science ICT and Future Planning [2012055325]
  3. National Research Foundation of Korea [2012-0006690]
  4. National Research Foundation of Korea [2013R1A1A2064883, 2014R1A1A2008821, 2011-0012320] Funding Source: Korea Institute of Science & Technology Information (KISTI), National Science & Technology Information Service (NTIS)

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Background: Since algal rhodopsins, the eukaryotic seven-transmembrane proteins, are generally difficult to express in Escherichia coli, eukaryotic cells have been used for heterologous expression. Mistic, a membrane-associated protein that was originally discovered in Bacillus subtilis, has been shown to improve the expression levels of many foreign integral membrane proteins in E. coli when used as a fusion partner linked to the N-terminus of cargo proteins. Methods: Here, we expressed two algal rhodopsins with N- and C-terminal Mistic domains in E. coli-Acetabularia rhodopsin I (an and Chlamydomonas sensory rhodopsin B (CSRB, channel rhodopsin 2). UV/VIS spectroscopy, pH titration of proton acceptor residue, laser-induced photolysis and electrophysiological measurement were used for investigating important residues in proton transport and spectroscopic characters of the proteins. Results: Protein yield of two algal rhodopsins was enhanced, obtaining 0.12 mg of Mistic-ARI and 0.04 mg of Mistic-CSRB per liter of culture. Spheroplast expression Mistic-ARI had outward proton-pumping activity, indicating protein functionality. Asp89 of ARI changed its protonation state by light absorption, and Asp100 was important for 0600 formation. Electrophysiology revealed that both residues took part in proton transport. The spectroscopic analyses of Mistic-CSRB revealed its characteristics. Conclusions: Fusion to the membrane-integrating protein Mistic can enhance overexpression of eukaryotic type I rhodopsins in E. coli. General Significance: These findings indicate that Mistic fusion and E. coli expression method could be an effective, low cost technique for studying eukaryotic membrane proteins. This may have useful implications, for example, in studying structural characteristics and optogenetics for rhodopsins. (C) 2015 Elsevier B.V. All rights reserved.

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