Functional analysis of the rice vacuolar zinc transporter OsMTP1

被引:118
作者
Menguer, Paloma K. [1 ,2 ]
Farthing, Emily [1 ]
Peaston, Kerry A. [1 ]
Ricachenevsky, Felipe Klein [3 ]
Fett, Janette Palma [2 ,3 ]
Williams, Lorraine E. [1 ]
机构
[1] Univ Southampton, Ctr Biol Sci, Southampton SO17 1B, Hants, England
[2] Univ Fed Rio Grande do Sul, Dept Bot, Inst Biociencias, BR-91501970 Porto Alegre, RS, Brazil
[3] Univ Fed Rio Grande do Sul, Ctr Biotecnol, BR-91501970 Porto Alegre, RS, Brazil
关键词
Cation diffusion facilitator; ion selectivity; metal tolerance protein; Oryza sativa; vacuole; zinc transporter; METAL-TOLERANCE-PROTEIN; ARABIDOPSIS-THALIANA; CDF FAMILY; MEMBRANE; GENES; ZN; BIOFORTIFICATION; TRANSFORMATION; SELECTIVITY; DEFICIENCY;
D O I
10.1093/jxb/ert136
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Heavy metal homeostasis is maintained in plant cells by specialized transporters which compartmentalize or efflux metal ions, maintaining cytosolic concentrations within a narrow range. OsMTP1 is a member of the cation diffusion facilitator (CDF)/metal tolerance protein (MTP) family of metal cation transporters in Oryza sativa, which is closely related to Arabidopsis thaliana MTP1. Functional complementation of the Arabidopsis T-DNA insertion mutant mtp1-1 demonstrates that OsMTP1 transports Zn in planta and localizes at the tonoplast. When heterologously expressed in the yeast mutant zrc1 cot1, OsMTP1 complemented its Zn hypersensitivity and was also localized to the vacuole. OsMTP1 alleviated, to some extent, the Co sensitivity of this mutant, rescued the Fe hypersensitivity of the ccc1 mutant at low Fe concentrations, and restored growth of the Cd-hypersensitive mutant ycf1 at low Cd concentrations. These results suggest that OsMTP1 transports Zn but also Co, Fe, and Cd, possibly with lower affinity. Site-directed mutagenesis studies revealed two substitutions in OsMTP1 that alter the transport function of this protein. OsMTP1 harbouring a substitution of Leu82 to a phenylalanine can still transport low levels of Zn, with an enhanced affinity for Fe and Co, and a gain of function for Mn. A substitution of His90 with an aspartic acid completely abolishes Zn transport but improves Fe transport in OsMTP1. These amino acid residues are important in determining substrate specificity and may be a starting point for refining transporter activity in possible biotechnological applications, such as biofortification and phytoremediation.
引用
收藏
页码:2871 / 2883
页数:13
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