Literature DB >> 27270880

Gating of the two-pore cation channel AtTPC1 in the plant vacuole is based on a single voltage-sensing domain.

D Jaślan1, T D Mueller1, D Becker1, J Schultz2, T A Cuin1, I Marten1, I Dreyer3, G Schönknecht4, R Hedrich1.   

Abstract

The two-pore cation channel TPC1 operates as a dimeric channel in animal and plant endomembranes. Each subunit consists of two homologous Shaker-like halves, with 12 transmembrane domains in total (S1-S6, S7-S12). In plants, TPC1 channels reside in the vacuolar membrane, and upon voltage stimulation, give rise to the well-known slow-activating SV currents. Here, we combined bioinformatics, structure modelling, site-directed mutagenesis, and in planta patch clamp studies to elucidate the molecular mechanisms of voltage-dependent channel gating in TPC1 in its native plant background. Structure-function analysis of the Arabidopsis TPC1 channel in planta confirmed that helix S10 operates as the major voltage-sensing site, with Glu450 and Glu478 identified as possible ion-pair partners for voltage-sensing Arg537. The contribution of helix S4 to voltage sensing was found to be negligible. Several conserved negative residues on the luminal site contribute to calcium binding, stabilizing the closed channel. During evolution of plant TPC1s from two separate Shaker-like domains, the voltage-sensing function in the N-terminal Shaker-unit (S1-S4) vanished.
© 2016 German Botanical Society and The Royal Botanical Society of the Netherlands.

Entities:  

Keywords:  Arabidopsis thaliana; gating; plant TPC1; two-pore ion channel; vacuole; voltage sensor

Mesh:

Substances:

Year:  2016        PMID: 27270880     DOI: 10.1111/plb.12478

Source DB:  PubMed          Journal:  Plant Biol (Stuttg)        ISSN: 1435-8603            Impact factor:   3.081


  7 in total

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Review 5.  Molecular Evolution of Calcium Signaling and Transport in Plant Adaptation to Abiotic Stress.

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6.  Vacuolar ion channels in the liverwort Marchantia polymorpha: influence of ion channel inhibitors.

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7.  Role of auxin (IAA) in the regulation of slow vacuolar (SV) channels and the volume of red beet taproot vacuoles.

Authors:  Zbigniew Burdach; Agnieszka Siemieniuk; Zenon Trela; Renata Kurtyka; Waldemar Karcz
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  7 in total

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