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Subcellular Localization of Cadmium and Cadmium-Binding Peptides in Tobacco Leaves 1: Implication of a Transport Function for Cadmium-Binding Peptides

机译:烟叶中镉和镉结合肽的亚细胞定位:镉结合肽的转运功能的含义

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摘要

The synthesis of Cd-binding peptides (CdBPs) was induced upon addition of 20 micromolar CdCl2 (nonphytotoxic level) to the nutrient solution of hydroponically grown tobacco seedlings (Nicotiana rustica var Pavonii). Amino acid analysis showed that the main components were γ-(Glu-Cys)3-Gly and γ-(Glu-Cys)4-Gly. Seedlings exposed to the metal for 1 week contained similar glutathione levels as found in the controls (about 0.18 micromole per gram fresh weight). If, as has been proposed, CdBPs are involved in Cd-detoxification by chelation, both metal and ligand must be localized in the same cellular compartment. To directly determine the localization of Cd and CdBPs, protoplasts and vacuoles were isolated from leaves of Cd-exposed seedlings. Purified vacuoles contained virtually all of the CdBPs and Cd found in protoplasts (104% ± 8 and 110% ± 8, respectively). CdBPs were associated with the vacuolar sap and not with the tonoplast membrane. Glutathione was observed in leaves and protoplasts but not in vacuoles. The probability that CdBPs are synthesized extravacuolarly and our finding that they and Cd are predominantly located in the vacuole suggest that these molecules might be involved in transport of Cd to the vacuole. Our results also suggest that a simple cytoplasmic chelator role for CdBPs in Cd tolerance cannot be assumed.
机译:向水培烟草幼苗(Nicotiana Rustica var Pavonii)的营养液中添加20微摩尔CdCl2(无植物毒性水平),即可诱导Cd结合肽(CdBPs)的合成。氨基酸分析表明,主要成分为γ-(Glu-Cys)3-Gly和γ-(Glu-Cys)4-Gly。暴露于金属1周的幼苗所含谷胱甘肽水平与对照相似(每克鲜重约0.18微摩尔)。如果已经提出,如果CdBP通过螯合参与Cd的解毒作用,则金属和配体都必须位于同一细胞室内。为了直接确定Cd和CdBPs的定位,从暴露于Cd的幼苗叶片中分离出原生质体和液泡。纯化的液泡几乎包含原生质体中发现的所有CdBP和Cd(分别为104%±8和110%±8)。 CdBPs与液泡汁液有关,与液泡膜无关。在叶片和原生质体中观察到了谷胱甘肽,但在液泡中没有观察到。 CdBPs空泡合成的可能性以及我们发现它们和Cd主要位于液泡中的结果表明,这些分子可能参与了Cd向液泡的转运。我们的结果还表明,不能假定CdBPs在Cd耐受性中具有简单的细胞质螯合剂作用。

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