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Heavy metal tolerance in the fission yeast requires an ATP-binding cassette-type vacuolar membrane transporter.

机译:裂变酵母中的重金属耐受性需要ATP结合盒式液泡膜转运蛋白。

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摘要

In response to heavy metal stress, plants and certain fungi, such as the fission yeast Schizosaccharomyces pombe, synthesize small metal-binding peptides known as phytochelatins. We have identified a cadmium sensitive S. pombe mutant deficient in the accumulation of a sulfide-containing phytochelatin-cadmium complex, and have isolated the gene, designated hmt1, that complements this mutant. The deduced protein sequence of the hmt1 gene product shares sequence identity with the family of ABC (ATP-binding cassette)-type transport proteins which includes the mammalian P-glycoproteins and CFTR, suggesting that the encoded product is an integral membrane protein. Analysis of fractionated fission yeast cell components indicates that the HMT1 polypeptide is associated with the vacuolar membrane. Additionally, fission yeast strains harboring an hmt1-expressing multicopy plasmid exhibit enhanced metal tolerance along with a higher intracellular level of cadmium, implying a relationship between HMT1 mediated transport and compartmentalization of heavy metals. This suggests that tissue-specific overproduction of a functional hmt1 product in transgenic plants might be a means to alter the tissue localization of these elements, such as for sequestering heavy metals away from consumable parts of crop plants.
机译:响应重金属胁迫,植物和某些真菌(例如裂殖酵母裂殖酵母)会合成称为植物螯合蛋白的小金属结合肽。我们已经确定了一个镉敏感的S. pombe突变体,该突变体在含硫化物的植物螯合素-镉复合物的积累中缺乏,并且已经分离出命名为htm1的基因,该基因补充了该突变体。推导的hmt1基因产物的蛋白质序列与包括哺乳动物P-糖蛋白和CFTR在内的ABC(ATP结合盒)型转运蛋白家族具有序列同一性,表明编码的产物是完整的膜蛋白。分馏的裂殖酵母细胞成分的分析表明,HMT1多肽与液泡膜相关。此外,携带hmt1表达多拷贝质粒的裂变酵母菌株显示出更高的金属耐受性以及较高的细胞内镉水平,这暗示HMT1介导的转运与重金属区室化之间的关系。这表明转基因植物中功能性hmt1产品的组织特异性过量生产可能是改变这些元素在组织中的定位的一种手段,例如将重金属与农作物的可消耗部分隔离开来。

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