An unexpected hydratase synthesizes the green light-absorbing pigment fucoxanthin

Author:

Cao Tianjun12ORCID,Bai Yu3ORCID,Buschbeck Paul4ORCID,Tan Qiaozhu5ORCID,Cantrell Michael B3ORCID,Chen Yinjuan6ORCID,Jiang Yanyou1ORCID,Liu Run-Zhou7ORCID,Ries Nana K4ORCID,Shi Xiaohuo6ORCID,Sun Yan8ORCID,Ware Maxwell A3ORCID,Yang Fenghua5ORCID,Zhang Huan12ORCID,Han Jichang8ORCID,Zhang Lihan79ORCID,Huang Jing2510ORCID,Lohr Martin4ORCID,Peers Graham3ORCID,Li Xiaobo12ORCID

Affiliation:

1. Key Laboratory of Growth Regulation and Translational Research of Zhejiang Province, School of Life Sciences, Westlake University , Hangzhou 310024 , China

2. Institute of Biology, Westlake Institute for Advanced Study , Hangzhou 310024 , China

3. Department of Biology, Colorado State University , Fort Collins, CO 80523 , USA

4. Institut für Molekulare Physiologie, Johannes Gutenberg-University , 55099 Mainz , Germany

5. Key Laboratory of Structural Biology of Zhejiang Province, School of Life Sciences, Westlake University , Hangzhou 310024 , China

6. Key Laboratory of Precise Synthesis of Functional Molecules of Zhejiang Province, School of Science, Instrumentation and Service Center for Molecular Sciences, Westlake University , Hangzhou 310024 , China

7. Key Laboratory of Precise Synthesis of Functional Molecules of Zhejiang Province, School of Science, Westlake University , Hangzhou 310024 , China

8. College of Food and Pharmaceutical Sciences, Ningbo University , Ningbo 315211 , China

9. Institute of Natural Sciences, Westlake Institute for Advanced Study , Hangzhou 310024 , China

10. Westlake Laboratory of Life Sciences and Biomedicine , Hangzhou 310024 , China

Abstract

AbstractThe ketocarotenoid fucoxanthin and its derivatives can absorb blue–green light enriched in marine environments. Fucoxanthin is widely adopted by phytoplankton species as a main light-harvesting pigment, in contrast to land plants that primarily employ chlorophylls. Despite its supreme abundance in the oceans, the last steps of fucoxanthin biosynthesis have remained elusive. Here, we identified the carotenoid isomerase-like protein CRTISO5 as the diatom fucoxanthin synthase that is related to the carotenoid cis–trans isomerase CRTISO from land plants but harbors unexpected enzymatic activity. A crtiso5 knockout mutant in the model diatom Phaeodactylum tricornutum completely lacked fucoxanthin and accumulated the acetylenic carotenoid phaneroxanthin. Recombinant CRTISO5 converted phaneroxanthin into fucoxanthin in vitro by hydrating its carbon–carbon triple bond, instead of functioning as an isomerase. Molecular docking and mutational analyses revealed residues essential for this activity. Furthermore, a photophysiological characterization of the crtiso5 mutant revealed a major structural and functional role of fucoxanthin in photosynthetic pigment–protein complexes of diatoms. As CRTISO5 hydrates an internal alkyne physiologically, the enzyme has unique potential for biocatalytic applications. The discovery of CRTISO5 illustrates how neofunctionalization leads to major diversification events in evolution of photosynthetic mechanisms and the prominent brown coloration of most marine photosynthetic eukaryotes.

Funder

National Key R&D Program of China

United State Department of Energy, Office of Science, Biological and Environmental Research

National Natural Science Foundation of China to Jing Huang

Zhejiang Natural Science Foundation Outstanding Youth

Westlake Education Foundation

Publisher

Oxford University Press (OUP)

Subject

Cell Biology,Plant Science

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