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研究拟南芥中单个金属硫蛋白对铜分布和金属耐受性的具体贡献。

Examining the specific contributions of individual Arabidopsis metallothioneins to copper distribution and metal tolerance.

作者信息

Guo Woei-Jiun, Meetam Metha, Goldsbrough Peter B

机构信息

Department of Botany and Plant Pathology, Purdue University, West Lafayette, Indiana 47907, USA.

出版信息

Plant Physiol. 2008 Apr;146(4):1697-706. doi: 10.1104/pp.108.115782. Epub 2008 Feb 20.

Abstract

Metallothioneins (MTs) are small cysteine-rich proteins found in various eukaryotes. Plant MTs are classified into four types based on the arrangement of cysteine residues. To determine whether all four types of plant MTs function as metal chelators, six Arabidopsis (Arabidopsis thaliana) MTs (MT1a, MT2a, MT2b, MT3, MT4a, and MT4b) were expressed in the copper (Cu)- and zinc (Zn)-sensitive yeast mutants, Deltacup1 and Deltazrc1 Deltacot1, respectively. All four types of Arabidopsis MTs provided similar levels of Cu tolerance and accumulation to the Deltacup1 mutant. The type-4 MTs (MT4a and MT4b) conferred greater Zn tolerance and higher accumulation of Zn than other MTs to the Deltazrc1 Deltacot1 mutant. To examine the functions of MTs in plants, we studied Arabidopsis plants that lack MT1a and MT2b, two MTs that are expressed in phloem. The lack of MT1a, but not MT2b, led to a 30% decrease in Cu accumulation in roots of plants exposed to 30 mum CuSO(4). Ectopic expression of MT1a RNA in the mt1a-2 mt2b-1 mutant restored Cu accumulation in roots. The mt1a-2 mt2b-1 mutant had normal metal tolerance. However, when MT deficiency was combined with phytochelatin deficiency, growth of the mt1a-2 mt2b-1 cad1-3 triple mutant was more sensitive to Cu and cadmium compared to the cad1-3 mutant. Together these results provide direct evidence for functional contributions of MTs to plant metal homeostasis. MT1a, in particular, plays a role in Cu homeostasis in the roots under elevated Cu. Moreover, MTs and phytochelatins function cooperatively to protect plants from Cu and cadmium toxicity.

摘要

金属硫蛋白(MTs)是在各种真核生物中发现的富含半胱氨酸的小蛋白。根据半胱氨酸残基的排列方式,植物MTs可分为四种类型。为了确定所有四种类型的植物MTs是否都作为金属螯合剂发挥作用,分别在对铜(Cu)和锌(Zn)敏感的酵母突变体Deltacup1和Deltazrc1 Deltacot1中表达了六种拟南芥(Arabidopsis thaliana)MTs(MT1a、MT2a、MT2b、MT3、MT4a和MT4b)。所有四种类型的拟南芥MTs对Deltacup1突变体提供了相似水平的Cu耐受性和积累。4型MTs(MT4a和MT4b)比其他MTs赋予Deltazrc1 Deltacot1突变体更高的Zn耐受性和更高的Zn积累。为了研究MTs在植物中的功能,我们研究了缺乏MT1a和MT2b的拟南芥植物,MT1a和MT2b是在韧皮部表达的两种MTs。缺乏MT1a而非MT2b导致暴露于30 μM CuSO₄的植物根中Cu积累减少30%。在mt1a - 2 mt2b - 1突变体中异位表达MT1a RNA可恢复根中的Cu积累。mt1a - 2 mt2b - 1突变体具有正常的金属耐受性。然而,当MT缺乏与植物螯合肽缺乏相结合时,与cad1 - 3突变体相比,mt1a - 2 mt2b - 1 cad1 - 3三重突变体的生长对Cu和镉更敏感。这些结果共同为MTs对植物金属稳态的功能贡献提供了直接证据。特别是MT1a在Cu浓度升高时在根中的Cu稳态中发挥作用。此外,MTs和植物螯合肽协同发挥作用以保护植物免受Cu和镉毒性。

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