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Probing structure-function relationships in early events in photosynthesis using a chimeric photocomplex.
Nagashima, Kenji V P; Sasaki, Mai; Hashimoto, Kanako; Takaichi, Shinichi; Nagashima, Sakiko; Yu, Long-Jiang; Abe, Yuto; Gotou, Kenta; Kawakami, Tomoaki; Takenouchi, Mizuki; Shibuya, Yuuta; Yamaguchi, Akira; Ohno, Takashi; Shen, Jian-Ren; Inoue, Kazuhito; Madigan, Michael T; Kimura, Yukihiro; Wang-Otomo, Zheng-Yu.
Afiliação
  • Nagashima KVP; Research Institute for Photobiological Hydrogen Production, Kanagawa University, Kanagawa 259-1293, Japan; wt503649bw@kanagawa-u.ac.jp ykimura@people.kobe-u.ac.jp wang@ml.ibaraki.ac.jp.
  • Sasaki M; Faculty of Science and Institute of Quantum Beam Science, Ibaraki University, Mito 310-8512, Japan.
  • Hashimoto K; Department of Agrobioscience, Graduate School of Agricultural Science, Kobe University, Kobe 657-8501, Japan.
  • Takaichi S; Department of Biology, Nippon Medical School, Tokyo 180-0023, Japan.
  • Nagashima S; Department of Biological Sciences, Tokyo Metropolitan University, Tokyo 192-0397, Japan.
  • Yu LJ; Research Institute for Integrated Science, Kanagawa University, Kanagawa 259-1293, Japan.
  • Abe Y; Research Institute for Interdisciplinary Science, Okayama University, Okayama 700-8530, Japan.
  • Gotou K; Faculty of Science and Institute of Quantum Beam Science, Ibaraki University, Mito 310-8512, Japan.
  • Kawakami T; Faculty of Science and Institute of Quantum Beam Science, Ibaraki University, Mito 310-8512, Japan.
  • Takenouchi M; Faculty of Science and Institute of Quantum Beam Science, Ibaraki University, Mito 310-8512, Japan.
  • Shibuya Y; Faculty of Science and Institute of Quantum Beam Science, Ibaraki University, Mito 310-8512, Japan.
  • Yamaguchi A; Faculty of Science and Institute of Quantum Beam Science, Ibaraki University, Mito 310-8512, Japan.
  • Ohno T; Faculty of Science and Institute of Quantum Beam Science, Ibaraki University, Mito 310-8512, Japan.
  • Shen JR; Department of Agrobioscience, Graduate School of Agricultural Science, Kobe University, Kobe 657-8501, Japan.
  • Inoue K; Research Institute for Interdisciplinary Science, Okayama University, Okayama 700-8530, Japan.
  • Madigan MT; Research Institute for Photobiological Hydrogen Production, Kanagawa University, Kanagawa 259-1293, Japan.
  • Kimura Y; Research Institute for Integrated Science, Kanagawa University, Kanagawa 259-1293, Japan.
  • Wang-Otomo ZY; Department of Microbiology, Southern Illinois University, Carbondale, IL 62901.
Proc Natl Acad Sci U S A ; 114(41): 10906-10911, 2017 10 10.
Article em En | MEDLINE | ID: mdl-28935692
ABSTRACT
The native core light-harvesting complex (LH1) from the thermophilic purple phototrophic bacterium Thermochromatium tepidum requires Ca2+ for its thermal stability and characteristic absorption maximum at 915 nm. To explore the role of specific amino acid residues of the LH1 polypeptides in Ca-binding behavior, we constructed a genetic system for heterologously expressing the Tch. tepidum LH1 complex in an engineered Rhodobacter sphaeroides mutant strain. This system contained a chimeric pufBALM gene cluster (pufBA from Tch. tepidum and pufLM from Rba. sphaeroides) and was subsequently deployed for introducing site-directed mutations on the LH1 polypeptides. All mutant strains were capable of phototrophic (anoxic/light) growth. The heterologously expressed Tch. tepidum wild-type LH1 complex was isolated in a reaction center (RC)-associated form and displayed the characteristic absorption properties of this thermophilic phototroph. Spheroidene (the major carotenoid in Rba. sphaeroides) was incorporated into the Tch. tepidum LH1 complex in place of its native spirilloxanthins with one carotenoid molecule present per αß-subunit. The hybrid LH1-RC complexes expressed in Rba. sphaeroides were characterized using absorption, fluorescence excitation, and resonance Raman spectroscopy. Site-specific mutagenesis combined with spectroscopic measurements revealed that α-D49, ß-L46, and a deletion at position 43 of the α-polypeptide play critical roles in Ca binding in the Tch. tepidum LH1 complex; in contrast, α-N50 does not participate in Ca2+ coordination. These findings build on recent structural data obtained from a high-resolution crystallographic structure of the membrane integrated Tch. tepidum LH1-RC complex and have unambiguously identified the location of Ca2+ within this key antenna complex.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Proteínas de Bactérias / Cálcio / Rhodobacter sphaeroides / Chromatiaceae / Complexo de Proteínas do Centro de Reação Fotossintética / Complexos de Proteínas Captadores de Luz Tipo de estudo: Prognostic_studies Idioma: En Ano de publicação: 2017 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Proteínas de Bactérias / Cálcio / Rhodobacter sphaeroides / Chromatiaceae / Complexo de Proteínas do Centro de Reação Fotossintética / Complexos de Proteínas Captadores de Luz Tipo de estudo: Prognostic_studies Idioma: En Ano de publicação: 2017 Tipo de documento: Article