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Structural basis of unique ligand specificity of KAI2-like protein from parasitic weed Striga hermonthica.


ABSTRACT: The perception of two plant germination inducers, karrikins and strigolactones, are mediated by the proteins KAI2 and D14. Recently, KAI2-type proteins from parasitic weeds, which are possibly related to seed germination induced by strigolactone, have been classified into three clades characterized by different responses to karrikin/strigolactone. Here we characterized a karrikin-binding protein in Striga (ShKAI2iB) that belongs to intermediate-evolving KAI2 and provided the structural bases for its karrikin-binding specificity. Binding assays showed that ShKAI2iB bound karrikins but not strigolactone, differing from other KAI2 and D14. The crystal structures of ShKAI2iB and ShKAI2iB-karrikin complex revealed obvious structural differences in a helix located at the entry of its ligand-binding cavity. This results in a smaller closed pocket, which is also the major cause of ShKAI2iB's specificity of binding karrikin. Our structural study also revealed that a few non-conserved amino acids led to the distinct ligand-binding profile of ShKAI2iB, suggesting that the evolution of KAI2 resulted in its diverse functions.

SUBMITTER: Xu Y 

PROVIDER: S-EPMC4979206 | biostudies-literature | 2016 Aug

REPOSITORIES: biostudies-literature

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Structural basis of unique ligand specificity of KAI2-like protein from parasitic weed Striga hermonthica.

Xu Yuqun Y   Miyakawa Takuya T   Nakamura Hidemitsu H   Nakamura Akira A   Imamura Yusaku Y   Asami Tadao T   Tanokura Masaru M  

Scientific reports 20160810


The perception of two plant germination inducers, karrikins and strigolactones, are mediated by the proteins KAI2 and D14. Recently, KAI2-type proteins from parasitic weeds, which are possibly related to seed germination induced by strigolactone, have been classified into three clades characterized by different responses to karrikin/strigolactone. Here we characterized a karrikin-binding protein in Striga (ShKAI2iB) that belongs to intermediate-evolving KAI2 and provided the structural bases for  ...[more]

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