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Phototrophy by antenna-containing rhodopsin pumps in aquatic environments

  • Ariel Chazan
  • , Ishita Das
  • , Takayoshi Fujiwara
  • , Shunya Murakoshi
  • , Andrey Rozenberg
  • , Ana Molina-Márquez
  • , Fumiya K. Sano
  • , Tatsuki Tanaka
  • , Patricia Gómez-Villegas
  • , Shirley Larom
  • , Alina Pushkarev
  • , Partha Malakar
  • , Masumi Hasegawa
  • , Yuya Tsukamoto
  • , Tomohiro Ishizuka
  • , Masae Konno
  • , Takashi Nagata
  • , Yosuke Mizuno
  • , Kota Katayama
  • , Rei Abe-Yoshizumi
  • Sanford Ruhman, Keiichi Inoue, Hideki Kandori, Rosa León, Wataru Shihoya, Susumu Yoshizawa, Mordechai Sheves, Osamu Nureki, Oded Béjà

研究成果: Article査読

抄録

Energy transfer from light-harvesting ketocarotenoids to the light-driven proton pump xanthorhodopsins has been previously demonstrated in two unique cases: an extreme halophilic bacterium1 and a terrestrial cyanobacterium2. Attempts to find carotenoids that bind and transfer energy to abundant rhodopsin proton pumps3 from marine photoheterotrophs have thus far failed4–6. Here we detected light energy transfer from the widespread hydroxylated carotenoids zeaxanthin and lutein to the retinal moiety of xanthorhodopsins and proteorhodopsins using functional metagenomics combined with chromophore extraction from the environment. The light-harvesting carotenoids transfer up to 42% of the harvested energy in the violet- or blue-light range to the green-light absorbing retinal chromophore. Our data suggest that these antennas may have a substantial effect on rhodopsin phototrophy in the world’s lakes, seas and oceans. However, the functional implications of our findings are yet to be discovered.

本文言語English
ページ(範囲)535-540
ページ数6
ジャーナルNature
615
7952
DOI
出版ステータスPublished - 2023 3月 16
外部発表はい

UN SDG

この成果は、次の持続可能な開発目標に貢献しています

  1. SDG 14 - 海の豊かさを守ろう
    SDG 14 海の豊かさを守ろう

ASJC Scopus subject areas

  • 一般

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