Functional expression of AtHMA4, a P1B-type ATPase of the Zn/Co/Cd/Pb subclass

被引:168
作者
Mills, RF [1 ]
Krijger, GC [1 ]
Baccarini, PJ [1 ]
Hall, JL [1 ]
Williams, LE [1 ]
机构
[1] Univ Southampton, Sch Biol Sci, Southampton SO16 7PX, Hants, England
关键词
Arabidopsis thaliana; heavy metal transport; heterologous expression; metal pump; transporter; P-TYPE ATPASE; HEAVY-METAL TRANSPORT; ESCHERICHIA-COLI; MEMBRANE TOPOLOGY; ARABIDOPSIS-THALIANA; HELICOBACTER-PYLORI; ZNTA GENE; COPPER; DOMAIN; FAMILY;
D O I
10.1046/j.1365-313X.2003.01790.x
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Mechanisms are required by all organisms to maintain the concentration of essential heavy metals (e.g. Zn and Cu) within physiological limits and to minimise the detrimental effects of non-essential heavy metals (e.g. Cd). Heavy-metal P-type ATPases (HMAs) are a subgroup of the P-type ATPase superfamily that may contribute to metal homeostasis in plants. We cloned and characterised a member of this family, AtHMA4, from Arabidopsis thaliana that clusters with the Zn/Co/Cd/Pb subclass of HMAs on phylogenetic analysis. Sequencing of the AtHMA4 cDNA showed that it contained the conserved motifs found in all P-type ATPases and also motifs that are characteristic of heavy-metal ATPases. Escherichia coli mutants defective in the HMAs, CopA and ZntA , were used in functional complementation studies. AtHMA4 was able to restore growth at high [Zn] in the zntA mutant but not at high [Cu] in the copA mutant, suggesting a role in zinc transport. Heterologous expression of AtHMA4 in Saccharomyces cerevisiae made the yeast more resistant to Cd but did not affect sensitivity to other metals compared with vector-transformed controls. The organ specificity of AtHMA4 was analysed in Arabidopsis and showed that AtHMA4 was expressed in a range of tissues with highest expression in roots. AtHMA4 was upregulated in roots exposed to elevated levels of Zn and Mn but downregulated by Cd. Possible physiological roles of this transporter in Arabidopsis are discussed.
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收藏
页码:164 / 176
页数:13
相关论文
共 51 条
[1]   The catalytic domain of the P-type ATPase has the haloacid dehalogenase fold [J].
Aravind, L ;
Galperin, MY ;
Koonin, EV .
TRENDS IN BIOCHEMICAL SCIENCES, 1998, 23 (04) :127-129
[2]   A novel method for growing Arabidopsis thaliana plants hydroponically [J].
Arteca, RN ;
Arteca, JM .
PHYSIOLOGIA PLANTARUM, 2000, 108 (02) :188-193
[3]  
Ausubel F.A., 1988, CURRENT PROTOCOLS MO
[4]   Inventory of the superfamily of P-type ion pumps in Arabidopsis [J].
Axelsen, KB ;
Palmgren, MG .
PLANT PHYSIOLOGY, 2001, 126 (02) :696-706
[5]   Evolution of substrate specificities in the P-type ATPase superfamily [J].
Axelsen, KB ;
Palmgren, MG .
JOURNAL OF MOLECULAR EVOLUTION, 1998, 46 (01) :84-101
[6]   Zinc(II) tolerance in Escherichia coli K-12: evidence that the zntA gene (o732) encodes a cation transport ATPase [J].
Beard, SJ ;
Hashim, R ;
MembrilloHernandez, J ;
Hughes, MN ;
Poole, RK .
MOLECULAR MICROBIOLOGY, 1997, 25 (05) :883-891
[7]   Molecular mechanisms of plant metal tolerance and homeostasis [J].
Clemens, S .
PLANTA, 2001, 212 (04) :475-486
[8]   Zinc binding to the NH2-terminal domain of the Wilson disease copper-transporting ATPase -: Implications for in vivo metal ion-mediated regulation of ATPase activity [J].
DiDonato, M ;
Zhang, JY ;
Que, L ;
Sarkar, B .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2002, 277 (16) :13409-13414
[9]   The PROSITE database, its status in 2002 [J].
Falquet, L ;
Pagni, M ;
Bucher, P ;
Hulo, N ;
Sigrist, CJA ;
Hofmann, K ;
Bairoch, A .
NUCLEIC ACIDS RESEARCH, 2002, 30 (01) :235-238
[10]  
Felsenstein J., 2002, PHYLOGENY INFERENCE