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Toxicometallomics of Cadmium Manganese and Arsenic with Special Reference to the Roles of Metal Transporters

机译:镉锰和砷的毒理学与金属转运体的作用特别相关

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摘要

The transport systems for metals play crucial roles in both the physiological functions of essential metals and the toxic effects of hazardous metals in mammals and plants. In mammalian cells, Zn transporters such as ZIP8 and ZIP14 have been found to function as the transporters for Mn(II) and Cd(II), contributing to the maintenance of Mn homeostasis and metallothionein-independent transports of Cd, respectively. In rice, the Mn transporter OsNramp5 expressed in the root is used for the uptake of Cd from the soil. Japan began to cultivate OsNramp5 mutant rice, which was found to accumulate little Cd, to prevent Cd accumulation. Inorganic trivalent arsenic (As(III)) is absorbed into mammalian cells via aquaglyceroporin, a water and glycerol channel. The ortholog of aquaporin in rice, OsLsi1, was found to be an Si transporter expressed in rice root, and is responsible for the absorption of soil As(III) into the root. Since rice is a hyperaccumulator of Si, higher amounts of As(III) are incorporated into rice compared to other plants. Thus, the transporters of essential metals are also utilized to incorporate toxic metals in both mammals and plants, and understanding the mechanisms of metal transports is important for the development of mitigation strategies against food contamination.
机译:金属的运输系统在必需金属的生理功能以及有害金属在哺乳动物和植物中的毒性作用中都起着至关重要的作用。在哺乳动物细胞中,已发现锌转运蛋白如ZIP8和ZIP14充当Mn(II)和Cd(II)的转运蛋白,分别有助于维持Mn的稳态和金属硫蛋白的非依赖性Cd转运。在水稻中,根中表达的Mn转运蛋白OsNramp5用于从土壤中吸收Cd。日本开始种植OsNramp5突变水稻,发现该水稻积累的Cd很少,可以防止Cd的积累。无机三价砷(As(III))通过水甘油通道,水和甘油通道吸收到哺乳动物细胞中。水稻中水通道蛋白的直向同源物,OsLsi1,是在水稻根部表达的一种硅转运蛋白,负责土壤As(III)向根部的吸收。由于大米是硅的超积累物,因此与其他植物相比,大米中会掺入更多的As(III)。因此,必需金属的转运蛋白也被用于在哺乳动物和植物中掺入有毒金属,了解金属转运的机理对于制定针对食品污染的缓解策略至关重要。

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