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Computer-Simulated Evaluation of Possible Mechanisms for Quenching Heavy Metal Ion Activity in Plant Vacuoles

机译:对植物液泡中重金属离子活性进行淬灭的可能机理的计算机模拟评估

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摘要

Various mechanisms have been suggested for the quenching of Cd ion activity in plant vacuoles. These include solution complexation with organic acids and sulfhydryl-containing peptides and precipitation as sulfides. Because direct experimental support for these mechanisms is lacking and difficult to obtain, we have used a computer model to evaluate the quenching role of possible organic and inorganic ligands of tobacco cultured cells exposed to Cd. Results of this thermodynamic evaluation, which assumes that a chemical equilibrium state is met in the vacuole, support the conclusion that sulfhydryl-containing peptides and certain organic acids may form soluble Cd complexes. Although complexation of malate and oxalate with Cd is predicted to be less significant, citrate in the concentration range encountered in the tobacco cultured cell vacuoles has high potential for forming soluble complexes with Cd over the entire possible vacuolar pH range, especially 4.3 to 7.0, even in the presence of low levels of Cd-binding peptides. In addition, results show that inorganic chloride, sulfide (if present), and phosphate may also act to sequester Cd ion activity in the vacuole by forming soluble Cd-Cl and insoluble CdS and Cd-phosphate.
机译:已经提出了各种机制来猝灭植物液泡中的Cd离子活性。这些包括与有机酸和含巯基的肽进行溶液络合,以及以硫化物形式沉淀。因为缺少对这些机制的直接实验支持,而且很难获得,所以我们使用计算机模型来评估暴露于Cd的烟草培养细胞可能的有机和无机配体的猝灭作用。假定液泡中满足化学平衡状态的热力学评估结果支持以下结论:含巯基的肽和某些有机酸可能形成可溶性Cd络合物。尽管苹果酸和草酸与Cd的络合作用不那么显着,但在烟草培养的细胞液泡中所遇到的浓度范围内的柠檬酸盐在整个液泡pH范围内,尤其是在4.3至7.0范围内,具有形成Cd可溶性复合物的高潜力。在低水平的Cd结合肽存在下此外,结果表明,无机氯化物,硫化物(如果存在)和磷酸盐还可以通过形成可溶性Cd-Cl和不溶性CdS和Cd-磷酸盐来隔离液泡中的Cd离子活性。

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