A Combined Zinc/Cadmium Sensor and Zinc/Cadmium Export Regulator in a Heavy Metal Pump

被引:63
作者
Baekgaard, Lone
Mikkelsen, Maria D.
Sorensen, Danny M.
Hegelund, Josefine N. [2 ]
Persson, Daniel P. [2 ]
Mills, Rebecca F. [3 ]
Yang, Zhang [1 ]
Husted, Soren [2 ]
Andersen, Jens Peter [4 ]
Buch-Pedersen, Morten J. [1 ]
Schjoerring, Jan K. [2 ]
Williams, Lorraine E. [3 ]
Palmgren, Michael G.
机构
[1] Univ Copenhagen, Danish Natl Res Fdn, Ctr Membrane Pumps Cells & Dis, PUMPKIN,Dept Plant Biol & Biotechnol, DK-1871 Frederiksberg C, Denmark
[2] Univ Copenhagen, Dept Agr & Ecol, DK-1871 Frederiksberg C, Denmark
[3] Univ Southampton, Sch Biol Sci, Southampton SO16 7PX, Hants, England
[4] Aarhus Univ, Danish Natl Res Fdn, Ctr Membrane Pumps Cells & Dis, PUMPKIN,Dept Physiol & Biophys, DK-8000 Aarhus C, Denmark
关键词
PLANT PLASMA-MEMBRANE; P-TYPE ATPASE; COPPER-TRANSPORTING ATPASE; WILSONS-DISEASE PROTEIN; N-TERMINAL DOMAIN; H+-ATPASE; BINDING DOMAIN; P-1B-TYPE ATPASE; MENKES PROTEIN; FUNCTIONAL EXPRESSION;
D O I
10.1074/jbc.M110.111260
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Heavy metal pumps (P1B-ATPases) are important for cellular heavy metal homeostasis. AtHMA4, an Arabidopsis thaliana heavy metal pump of importance for plant Zn2+ nutrition, has an extended C-terminal domain containing 13 cysteine pairs and a terminal stretch of 11 histidines. Using a novel size-exclusion chromatography, inductively coupled plasma mass spectrometry approach we report that the C-terminal domain of AtHMA4 is a high affinity Zn2+ and Cd2+ chelator with capacity to bind 10 Zn2+ ions per C terminus. When AtHMA4 is expressed in a Zn2+-sensitive zrc1 cot1 yeast strain, sequential removal of the histidine stretch and the cysteine pairs confers a gradual increase in Zn2+ and Cd2+ tolerance and lowered Zn2+ and Cd2+ content of transformed yeast cells. We conclude that the C-terminal domain of AtHMA4 serves a dual role as Zn2+ and Cd2+ chelator (sensor) and as a regulator of the efficiency of Zn2+ and Cd2+ export. The identification of a post-translational handle on Zn2+ and Cd2+ transport efficiency opens new perspectives for regulation of Zn2+ nutrition and tolerance in eukaryotes.
引用
收藏
页码:31243 / 31252
页数:10
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