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首页> 外文期刊>Metallomics. integrated biometal science >Metabolites and metals in Metazoa - what role do phytochelatins play in animals?
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Metabolites and metals in Metazoa - what role do phytochelatins play in animals?

机译:后生动物中的代谢物和金属-植物螯合螯合物在动物中起什么作用?

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Phytochelatins are sulfur-rich metal-binding peptides, and phytochelatin synthesis is one of the key mechanisms by which plants protect themselves against toxic soft metal ions such as cadmium. It has been known for a while now that some invertebrates also possess functional phytochelatin synthase (PCS) enzymes, and that at least one species, the nematode Caenorhabditis elegans, produces phytochelatins to help detoxify cadmium, and probably also other metal and metalloid ions including arsenic, zinc, selenium, silver, and copper. Here, we review recent studies on the occurrence, utilization, and regulation of phytochelatin synthesis in invertebrates. The phytochelatin synthase gene has a wide phylogenetic distribution, and can be found in species that cover almost all of the animal tree of life. The evidence to date, though, suggests that the occurrence is patchy, and even though some members of particular taxonomic groups may contain PCS genes, there are also many species without these genes. For animal species that do possess PCS genes, some of them (e.g. earthworms) do synthesize phytochelatins in response to potentially toxic elements, whereas others (e.g. Schistosoma mansoni, a parasitic helminth) do not appear to do so. Just how (and if) phytochelatins in invertebrates complement the function of metallothioneins remains to be elucidated, and the temporal, spatial, and metal specificity of the two systems is still unknown
机译:植物螯合素是富含硫的金属结合肽,植物螯合素的合成是植物保护自身免受有毒的软金属离子(如镉)侵害的关键机制之一。一段时间以来,人们已经知道一些无脊椎动物也具有功能性植物螯合酶合酶(PCS),并且至少一种线虫秀丽隐杆线虫(Caenorhabditis elegans)产生了植物螯合剂以帮助对镉以及其他金属和准金属离子进行解毒。 ,锌,硒,银和铜。在这里,我们回顾了无脊椎动物中植物螯合素合成的发生,利用和调节的最新研究。植物螯合素合酶基因具有较宽的系统发育分布,可以在几乎涵盖所有生物树的物种中找到。但是,迄今为止的证据表明,这种现象是零散的,即使某些特定分类群的某些成员可能包含PCS基因,也有许多没有这些基因的物种。对于确实具有PCS基因的动物物种,其中的某些物种(例如earth)会响应潜在的毒性元素而合成植物螯合素,而其他物种(例如寄生虫蠕虫曼氏血吸虫)似乎没有这样做。无脊椎动物中的植物螯合素如何(以及是否)补充金属硫蛋白的功能还有待阐明,并且这两个系统的时间,空间和金属特异性仍然未知

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