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Sedum Alfredii Hance 中的 Nramp6 单个氨基酸变化影响镉积累。

A Single Amino Acid Change in Nramp6 from Sedum Alfredii Hance Affects Cadmium Accumulation.

机构信息

State Key Laboratory of Tree Genetics and Breeding, Chinese Academy of Forestry, Xiangshan Road, Beijing 100091, China.

The Research Institute of Subtropical Forestry, Chinese Academy of Forestry, Fuyang, Hangzhou 311400, China.

出版信息

Int J Mol Sci. 2020 Apr 30;21(9):3169. doi: 10.3390/ijms21093169.

Abstract

in encodes a membrane-localized metal transporter. We isolated the allele from the hyperaccumulating ecotype (HE) of . When this allele was expressed in transgenic yeast and , it enhanced their cadmium (Cd) sensitivity by increased Cd transport and accumulation. We isolated another allele, , from a nonhyperaccumulating ecotype (NHE) of . Amino acid sequence comparisons revealed three amino acid differences between SaNramp6h and SaNramp6n. We investigated the Cd transport activity of the Nramp6 allele, and determined which residues are essential for the transport activity. We conducted structure-function analyses of SaNramp6 based on site-directed mutagenesis and functional assays of the mutants in yeast and . The three residues that differed between SaNramp6h and SaNramp6n were mutated. Only the L157P mutation of SaNramp6h impaired Cd transport. The other mutations, S218N and T504A, did not affect the transport activity of SaNramp6h, indicating that these residues are not essential for metal selectivity. Transgenic plants overexpressing showed altered metal accumulation in shoots and roots. Our results suggest that the conserved site L157 is essential for the high metal transport activity of SaNramp6h. This information may be useful for limiting or increasing Cd transport by other plant natural resistance associated macrophage protein (NRAMP) proteins.

摘要

在编码一种膜定位金属转运蛋白。我们从超积累生态型(HE)中分离出 等位基因。当该等位基因在转基因酵母和中表达时,通过增加 Cd 转运和积累,增强了它们对 Cd 的敏感性。我们从非超积累生态型(NHE)中分离出另一个等位基因 。氨基酸序列比较表明 SaNramp6h 和 SaNramp6n 之间有三个氨基酸差异。我们研究了 Nramp6 等位基因的 Cd 转运活性,并确定了哪些残基对转运活性是必需的。我们基于定点突变和酵母和中的突变体功能测定对 SaNramp6 进行了结构-功能分析。在 SaNramp6h 和 SaNramp6n 之间存在差异的三个残基被突变。只有 SaNramp6h 的 L157P 突变会损害 Cd 转运。其他突变,S218N 和 T504A,并没有影响 SaNramp6h 的转运活性,表明这些残基对金属选择性不是必需的。过表达 的转基因植物在地上部和根部的金属积累发生了改变。我们的结果表明,保守位点 L157 对 SaNramp6h 的高金属转运活性是必需的。这些信息可能有助于限制或增加其他植物天然抗性相关巨噬细胞蛋白(NRAMP)蛋白的 Cd 转运。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/26ef/7246828/a0a8bbec6508/ijms-21-03169-g001.jpg

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