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PMID: 21764990 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, Non-P.H.S.

A novel calcium binding site in the slow vacuolar cation channel TPC1 senses luminal calcium levels.

The Plant cell ·Vol. 23 ·No. 7 ·2011-07-00 ·Pages 2696-707

Dadacz-Narloch B, Beyhl D, Larisch C, López-Sanjurjo EJ, Reski R, Kuchitsu K, Müller TD, Becker D, Schönknecht G, Hedrich R

Abstract

Cytosolic calcium homeostasis is pivotal for intracellular signaling and requires sensing of calcium concentrations in the cytosol and accessible stores. Numerous Ca²⁺ binding sites have been characterized in cytosolic proteins. However, little is known about Ca²⁺ binding inside organelles, like the vacuole. The slow vacuolar (SV) channel, encoded by Arabidopsis thaliana TPC1, is regulated by luminal Ca²⁺. However, the D454/fou2 mutation in TPC1 eliminates vacuolar calcium sensitivity and increases store calcium content. In a search for the luminal calcium binding site, structure modeling indicated a possible coordination site formed by residues Glu-450, Asp-454, Glu-456, and Glu-457 on the luminal side of TPC1. Each Glu residue was replaced by Gln, the modified genes were transiently expressed in loss-of-TPC1-function protoplasts, and SV channel responses to luminal calcium were recorded by patch clamp. SV channels lacking any of the four negatively charged residues appeared altered in calcium sensitivity of channel gating. Our results indicate that Glu-450 and Asp-454 are directly involved in Ca²⁺ binding, whereas Glu-456 and Glu-457 are probably involved in connecting the luminal Ca²⁺ binding site to the channel gate. This novel vacuolar calcium binding site represents a potential tool to address calcium storage in plants.

MeSH Terms
Amino Acid Sequence Animals Arabidopsis/cytology,genetics,physiology Arabidopsis Proteins/chemistry,genetics,metabolism Binding Sites Calcium/metabolism Calcium Channels/chemistry,genetics,metabolism Calcium Signaling/physiology Homeostasis Humans Ion Channel Gating/physiology Models, Molecular Models, Theoretical Mutagenesis, Site-Directed Patch-Clamp Techniques Protein Conformation Sequence Alignment Vacuoles/metabolism
Chemicals
Arabidopsis Proteins Calcium Channels TPC1 protein, Arabidopsis Calcium
Authors & Affiliations
10 authors, click to expand affiliations / ORCID
Dadacz-Narloch Beata
University of Wuerzburg, Institute for Molecular Plant Physiology and Biophysics, D-97082 Wuerzburg, Germany.
Beyhl Diana
Larisch Christina
López-Sanjurjo Enrique J
Reski Ralf
Kuchitsu Kazuyuki
Müller Thomas D
Becker Dirk
Schönknecht Gerald
Hedrich Rainer
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Article Info
Journal
The Plant cell
Abbr.
Plant Cell
ISSN
1532-298X
Published
2011-07-00
Epub
2011-00-15
Pages
2696-707
Language
English
Region
England
NLM ID
9208688
PMCID
PMC3226227
Subset
IM
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