Literature DB >> 12006570

Mechanism of N-terminal autoinhibition in the Arabidopsis Ca(2+)/H(+) antiporter CAX1.

Jon K Pittman1, Toshiro Shigaki, Ning-Hui Cheng, Kendal D Hirschi.   

Abstract

Regulation of Ca(2+)/H(+) antiporters may be an important function in determining the duration and amplitude of cytosolic Ca(2+) oscillations. Previously the Arabidopsis Ca(2+)/H(+) transporter, CAX1 (cation exchanger 1), was identified by its ability to suppress yeast mutants defective in vacuolar Ca(2+) transport. Recently, a 36-amino acid N-terminal regulatory region on CAX1 has been identified that inhibits CAX1-mediated Ca(2+)/H(+) antiport. Here we show that a synthetic peptide designed against the CAX1 36 amino acids inhibited Ca(2+)/H(+) transport mediated by an N-terminal-truncated CAX1 but did not inhibit Ca(2+) transport by other Ca(2+)/H(+) antiporters. Ca(2+)/H(+) antiport activity measured from vacuolar-enriched membranes of Arabidopsis root was also inhibited by the CAX1 peptide. Through analyzing CAX chimeric constructs the region of interaction of the N-terminal regulatory region was mapped to include 7 amino acids (residues 56-62) within CAX1. The CAX1 N-terminal regulatory region was shown to physically interact with this 7-amino acid region by yeast two-hybrid analysis. Mutagenesis of amino acids within the N-terminal regulatory region implicated several residues as being essential for regulation. These findings describe a unique mode of antiporter autoinhibition and demonstrate the first detailed mechanisms for the regulation of a Ca(2+)/H(+) antiporter from any organism.

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Year:  2002        PMID: 12006570     DOI: 10.1074/jbc.M202563200

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  23 in total

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6.  Increased calcium levels and prolonged shelf life in tomatoes expressing Arabidopsis H+/Ca2+ transporters.

Authors:  Sunghun Park; Ning Hui Cheng; Jon K Pittman; Kil Sun Yoo; Jungeun Park; Roberta H Smith; Kendal D Hirschi
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7.  Distinct N-terminal regulatory domains of Ca(2+)/H(+) antiporters.

Authors:  Jon K Pittman; Coimbatore S Sreevidya; Toshiro Shigaki; Hanayo Ueoka-Nakanishi; Kendal D Hirschi
Journal:  Plant Physiol       Date:  2002-10       Impact factor: 8.340

8.  Functional association of Arabidopsis CAX1 and CAX3 is required for normal growth and ion homeostasis.

Authors:  Ning-Hui Cheng; Jon K Pittman; Toshiro Shigaki; Jinesh Lachmansingh; Sherry LeClere; Brett Lahner; David E Salt; Kendal D Hirschi
Journal:  Plant Physiol       Date:  2005-07-29       Impact factor: 8.340

9.  Functional and regulatory analysis of the Arabidopsis thaliana CAX2 cation transporter.

Authors:  Jon K Pittman; Toshiro Shigaki; Joy L Marshall; Jay L Morris; Ning-Hui Cheng; Kendal D Hirschi
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10.  Development of transgenic rice plants overexpressing the Arabidopsis H+/Ca2+ antiporter CAX1 gene.

Authors:  K-M Kim; Y-H Park; C K Kim; K Hirschi; J-K Sohn
Journal:  Plant Cell Rep       Date:  2004-09-15       Impact factor: 4.570

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