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BRI1 is a critical component of a plasma-membrane receptor for plant steroids

Author

Listed:
  • Zhi-Yong Wang

    (Howard Hughes Medical Institute and Plant Biology Laboratory, The Salk Institute for Biological Studies)

  • Hideharu Seto

    (Plant Functions Lab, RIKEN (The Institute of Physical and Chemical Research))

  • Shozo Fujioka

    (Plant Functions Lab, RIKEN (The Institute of Physical and Chemical Research))

  • Shigeo Yoshida

    (Plant Functions Lab, RIKEN (The Institute of Physical and Chemical Research))

  • Joanne Chory

    (Howard Hughes Medical Institute and Plant Biology Laboratory, The Salk Institute for Biological Studies)

Abstract

Most multicellular organisms use steroids as signalling molecules for physiological and developmental regulation. Two different modes of steroid action have been described in animal systems: the well-studied gene regulation response mediated by nuclear receptors1,2, and the rapid non-genomic responses mediated by proposed membrane-bound receptors3,4. Plant genomes do not seem to encode members of the nuclear receptor superfamily5. However, a transmembrane receptor kinase, brassinosteroid-insensitive1 (BRI1), has been implicated in brassinosteroid responses6,7. Here we show that BRI1 functions as a receptor of brassinolide, the most active brassinosteroid. The number of brassinolide-binding sites and the degree of response to brassinolide depend on the level of BRI1 protein. The brassinolide-binding activity co-immunoprecipitates with BRI1, and requires a functional BRI1 extracellular domain. Moreover, treatment of Arabidopsis seedlings with brassinolide induces autophosphorylation of BRI1, which, together with our binding studies, shows that BRI1 is a receptor kinase that transduces steroid signals across the plasma membrane.

Suggested Citation

  • Zhi-Yong Wang & Hideharu Seto & Shozo Fujioka & Shigeo Yoshida & Joanne Chory, 2001. "BRI1 is a critical component of a plasma-membrane receptor for plant steroids," Nature, Nature, vol. 410(6826), pages 380-383, March.
  • Handle: RePEc:nat:nature:v:410:y:2001:i:6826:d:10.1038_35066597
    DOI: 10.1038/35066597
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    Cited by:

    1. Sha Tang & Zhiying Zhao & Xiaotong Liu & Yi Sui & Dandan Zhang & Hui Zhi & Yuanzhu Gao & Hui Zhang & Linlin Zhang & Yannan Wang & Meicheng Zhao & Dongdong Li & Ke Wang & Qiang He & Renliang Zhang & We, 2023. "An E2-E3 pair contributes to seed size control in grain crops," Nature Communications, Nature, vol. 14(1), pages 1-17, December.
    2. Bingying Zhou & Qing Luo & Yanghui Shen & Liang Wei & Xia Song & Hangqian Liao & Lan Ni & Tao Shen & Xinglin Du & Junyou Han & Mingyi Jiang & Shengjun Feng & Gang Wu, 2023. "Coordinated regulation of vegetative phase change by brassinosteroids and the age pathway in Arabidopsis," Nature Communications, Nature, vol. 14(1), pages 1-18, December.
    3. Teng Jing & Yuying Wu & Yanwen Yu & Jiankun Li & Xiaohuan Mu & Liping Xu & Xi Wang & Guang Qi & Jihua Tang & Daowen Wang & Shuhua Yang & Jian Hua & Mingyue Gou, 2024. "Copine proteins are required for brassinosteroid signaling in maize and Arabidopsis," Nature Communications, Nature, vol. 15(1), pages 1-14, December.
    4. Cui Zhang & Yunyuan Xu & Siyi Guo & Jiaying Zhu & Qing Huan & Huanhuan Liu & Lei Wang & Guanzheng Luo & Xiujie Wang & Kang Chong, 2012. "Dynamics of Brassinosteroid Response Modulated by Negative Regulator LIC in Rice," PLOS Genetics, Public Library of Science, vol. 8(4), pages 1-14, April.

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