論文

査読有り 国際誌
2019年3月8日

Spectroscopic study of the transmembrane domain of a rhodopsin-phosphodiesterase fusion protein from a unicellular eukaryote.

The Journal of biological chemistry
  • Masahito Watari
  • ,
  • Tatsuya Ikuta
  • ,
  • Daichi Yamada
  • ,
  • Wataru Shihoya
  • ,
  • Kazuho Yoshida
  • ,
  • Satoshi P Tsunoda
  • ,
  • Osamu Nureki
  • ,
  • Hideki Kandori

294
10
開始ページ
3432
終了ページ
3443
記述言語
英語
掲載種別
研究論文(学術雑誌)
DOI
10.1074/jbc.RA118.006277

The choanoflagellate Salpingoeca rosetta contains a chimeric rhodopsin protein composed of an N-terminal rhodopsin (Rh) domain and a C-terminal cyclic nucleotide phosphodiesterase (PDE) domain. The Rh-PDE enzyme light-dependently decreases the concentrations of cyclic nucleotides such as cGMP and cAMP. Photoexcitation of purified full-length Rh-PDE yields an "M" intermediate with a deprotonated Schiff base, and its recovery is much faster than that of the enzyme domain. To gain structural and mechanistic insights into the Rh domain, here we expressed and purified the transmembrane domain of Rh-PDE, Rh-PDE(TMD), and analyzed it with transient absorption, light-induced difference UV-visible, and FTIR spectroscopy methods. These analyses revealed that the "K" intermediate forms within 0.005 ms and converts into the M intermediate with a time constant of 4 ms, with the latter returning to the original state within 4 s. FTIR spectroscopy revealed that all-trans to 13-cis photoisomerization occurs as the primary event during which chromophore distortion is located at the middle of the polyene chain, allowing the Schiff base to form a stronger hydrogen bond. We also noted that the peptide backbone of the α-helix becomes deformed upon M intermediate formation. Results from site-directed mutagenesis suggested that Glu-164 is protonated and that Asp-292 acts as the only Schiff base counterion in Rh-PDE. A strong reduction of enzymatic activity in a D292N variant, but not in an E164Q variant, indicated an important catalytic role of the negative charge at Asp-292. Our findings provide further mechanistic insights into rhodopsin-mediated, light-dependent regulation of second-messenger levels in eukaryotic microbes.

リンク情報
DOI
https://doi.org/10.1074/jbc.RA118.006277
PubMed
https://www.ncbi.nlm.nih.gov/pubmed/30622140
PubMed Central
https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6416415
ID情報
  • DOI : 10.1074/jbc.RA118.006277
  • ISSN : 0021-9258
  • PubMed ID : 30622140
  • PubMed Central 記事ID : PMC6416415

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