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来自毛马唐和水稻的新型富含半胱氨酸的肽通过限制镉在细胞内的积累来增强对镉的耐受性。

Novel cysteine-rich peptides from Digitaria ciliaris and Oryza sativa enhance tolerance to cadmium by limiting its cellular accumulation.

作者信息

Kuramata Masato, Masuya Shuichi, Takahashi Yoshihiro, Kitagawa Etsuko, Inoue Chihiro, Ishikawa Satoru, Youssefian Shohab, Kusano Tomonobu

机构信息

Graduate School of Life Sciences, Tohoku University, Sendai, Miyagi, Japan.

出版信息

Plant Cell Physiol. 2009 Jan;50(1):106-17. doi: 10.1093/pcp/pcn175. Epub 2008 Nov 18.

Abstract

By means of functional screening using the cadmium (Cd)-sensitive ycf1 yeast mutant, we have isolated a novel cDNA clone, DcCDT1, from Digitaria ciliaris growing in a former mining area in northern Japan, and have shown that it confers Cd tolerance to the yeast cells, which accumulated almost 2-fold lower Cd levels than control cells. The 521 bp DcCDT1 cDNA contains an open reading frame of 168 bp and encodes a deduced peptide, DcCDT1, that is 55 amino acid residues in length, of which 15 (27.3%) are cysteine residues. Five DcCDT1 homologs (here termed OsCDT1-OsCDT5) have been identified in rice, and all of them were up-regulated to varying degrees in the above-ground tissues by CdCl(2) treatment. Localization of green fluorescent protein fusions suggests that DcCDT1 and OsCDT1 are targeted to both cytoplasmic membranes and cell walls of plant cells. Transgenic Arabidopsis thaliana plants overexpressing DcCDT1 or OsCDT1 displayed a Cd-tolerant phenotype and, consistent with our yeast data, accumulated lower amounts of Cd when grown on CdCl(2). Collectively, our data suggest that DcCDT1 and OsCDT1 function to prevent entry of Cd into yeast and plant cells and thereby enhance their Cd tolerance.

摘要

通过使用对镉(Cd)敏感的ycf1酵母突变体进行功能筛选,我们从生长在日本北部一个旧矿区的纤毛马唐中分离出一个新的cDNA克隆DcCDT1,并证明它赋予酵母细胞对镉的耐受性,这些酵母细胞积累的镉水平比对照细胞低近2倍。521 bp的DcCDT1 cDNA包含一个168 bp的开放阅读框,编码一个推导的肽段DcCDT1,其长度为55个氨基酸残基,其中15个(27.3%)是半胱氨酸残基。在水稻中已鉴定出5个DcCDT1同源物(此处称为OsCDT1 - OsCDT5),通过CdCl₂处理后,它们在地上组织中均有不同程度的上调。绿色荧光蛋白融合物的定位表明,DcCDT1和OsCDT1定位于植物细胞的细胞质膜和细胞壁。过表达DcCDT1或OsCDT1的转基因拟南芥植株表现出耐镉表型,并且与我们的酵母实验数据一致,在CdCl₂上生长时积累的镉量较低。总体而言,我们的数据表明DcCDT1和OsCDT1的功能是防止镉进入酵母和植物细胞,从而增强它们对镉的耐受性。

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