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PMID: 11562366 Published · ppublish English Journal Article Research Support, U.S. Gov't, Non-P.H.S. Research Support, U.S. Gov't, P.H.S.

Structural determinants of Ca2+ transport in the Arabidopsis H+/Ca2+ antiporter CAX1.

The Journal of biological chemistry ·Vol. 276 ·No. 46 ·2001-11-16 ·Pages 43152-9

Shigaki T, Cheng NH, Pittman JK, Hirschi K

Abstract

Ca(2+) levels in plants, fungi, and bacteria are controlled in part by H(+)/Ca(2+) exchangers; however, the relationship between primary sequence and biological activity of these transporters has not been reported. The Arabidopsis H(+)/cation exchangers, CAX1 and CAX2, were identified by their ability to suppress yeast mutants defective in vacuolar Ca(2+) transport. CAX1 has a much higher capacity for Ca(2+) transport than CAX2. An Arabidopsis thaliana homolog of CAX1, CAX3, is 77% identical (93% similar) and, when expressed in yeast, localized to the vacuole but did not suppress yeast mutants defective in vacuolar Ca(2+) transport. Chimeric constructs and site-directed mutagenesis showed that CAX3 could suppress yeast vacuolar Ca(2+) transport mutants if a nine-amino acid region of CAX1 was inserted into CAX3 (CAX3-9). Biochemical analysis in yeast showed CAX3-9 had 36% of the H(+)/Ca(2+) exchange activity as compared with CAX1; however, CAX3-9 and CAX1 appear to differ in their transport of other ions. Exchanging the nine-amino acid region of CAX1 into CAX2 doubled yeast vacuolar Ca(2+) transport but did not appear to alter the transport of other ions. This nine-amino acid region is highly variable among the plant CAX-like transporters. These findings suggest that this region is involved in CAX-mediated Ca(2+) specificity.

MeSH Terms
Amino Acid Sequence Amino Acids/chemistry Antiporters/chemistry,metabolism Arabidopsis/chemistry Biological Transport Calcium/metabolism Calcium-Binding Proteins/chemistry,metabolism Cation Transport Proteins Cations Cell Membrane/metabolism Dose-Response Relationship, Drug Hydrogen/metabolism Hydrogen-Ion Concentration Kinetics Molecular Sequence Data Mutagenesis, Site-Directed Protein Binding Protein Conformation Protein Structure, Tertiary Recombinant Fusion Proteins/metabolism Sequence Homology, Amino Acid Signal Transduction Structure-Activity Relationship Time Factors Vacuoles/metabolism
Chemicals
Amino Acids Antiporters Calcium-Binding Proteins Cation Transport Proteins Cations Recombinant Fusion Proteins calcium-hydrogen antiporters Hydrogen Calcium
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Shigaki T
Baylor College of Medicine, Plant Physiology Group, United States Department of Agriculture/ARS Children's Nutrition Research Center, Houston, Texas 77030, USA.
Cheng N H
Pittman J K
Hirschi K
Article Info
Journal
The Journal of biological chemistry
Abbr.
J Biol Chem
ISSN
0021-9258
Published
2001-11-16
Epub
2001-00-18
Pages
43152-9
Language
English
Region
United States
NLM ID
2985121R
Subset
IM
Grants
NIGMS NIH HHS · 1R01 GM57427 · United States
PHS HHS · 5 P30 · United States
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