Molecular Bases of Multimodal Regulation of a Fungal Transient Receptor Potential (TRP) Channel

Multimodal activation by various stimuli is a fundamental characteristic of TRP channels. We identified a fungal TRP channel, TRPGz, exhibiting activation by hyperosmolarity, temperature increase, cytosolic Ca2+ elevation, membrane potential, and H2O2 application, and thus it is expected to represen...

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Veröffentlicht in:The Journal of biological chemistry 2013-05, Vol.288 (21), p.15303-15317
Hauptverfasser: Ihara, Makoto, Hamamoto, Shin, Miyanoiri, Yohei, Takeda, Mitsuhiro, Kainosho, Masatsune, Yabe, Isamu, Uozumi, Nobuyuki, Yamashita, Atsuko
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Sprache:eng
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Zusammenfassung:Multimodal activation by various stimuli is a fundamental characteristic of TRP channels. We identified a fungal TRP channel, TRPGz, exhibiting activation by hyperosmolarity, temperature increase, cytosolic Ca2+ elevation, membrane potential, and H2O2 application, and thus it is expected to represent a prototypic multimodal TRP channel. TRPGz possesses a cytosolic C-terminal domain (CTD), primarily composed of intrinsically disordered regions with some regulatory modules, a putative coiled-coil region and a basic residue cluster. The CTD oligomerization mediated by the coiled-coil region is required for the hyperosmotic and temperature increase activations but not for the tetrameric channel formation or other activation modalities. In contrast, the basic cluster is responsible for general channel inhibition, by binding to phosphatidylinositol phosphates. The crystal structure of the presumed coiled-coil region revealed a tetrameric assembly in an offset spiral rather than a canonical coiled-coil. This structure underlies the observed moderate oligomerization affinity enabling the dynamic assembly and disassembly of the CTD during channel functions, which are compatible with the multimodal regulation mediated by each functional module. Background: Multimodality of TRP channels underlies their diverse physiological functions. Results: We identified a fungal multimodal TRP channel whose cytosolic domain (CTD) mediates various channel regulation. Conclusion: CTD has an oligomerization module critical for osmoreception, yet its flexible structure allows dynamic regulations with other functional modalities. Significance: This work proposes structural and biophysical principles for multimodality of a TRP channel family member.
ISSN:0021-9258
1083-351X
DOI:10.1074/jbc.M112.434795