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Shotgun proteomic analysis of nanoparticle-synthesizing Desulfovibrio alaskensis in response to platinum and palladium

机译:纳米合成阿拉斯加脱硫弧菌对和钯响应的弹枪蛋白质组学分析

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摘要

Platinum and palladium are much sought-after metals of critical global importance in terms of abundance and availability. At the nano-scale these metals are of even higher value due to their catalytic abilities for industrial applications. is able to capture ionic forms of both of these metals, reduce them and synthesize elemental nanoparticles. Despite this ability, very little is known about the biological pathways involved in the formation of these nanoparticles. Proteomic analysis of in response to platinum and palladium has highlighted those proteins involved in both the reductive pathways and the wider stress-response system. A core set of 13 proteins was found in both treatments and consisted of proteins involved in metal transport and reduction. There were also seven proteins that were specific to either platinum or palladium. Overexpression of one of these platinum-specific genes, a NiFe hydrogenase small subunit (Dde_2137), resulted in the formation of larger nanoparticles. This study improves our understanding of the pathways involved in the metal resistance mechanism of and is informative regarding how we can tailor the bacterium for nanoparticle production, enhancing its application as a bioremediation tool and as a way to capture contaminant metals from the environment.
机译:就数量和可用性而言,铂金和钯金是全球至关重要的金属。在纳米级,这些金属由于其在工业应用中的催化能力而具有更高的价值。能够捕获这两种金属的离子形式,还原它们并合成元素纳米粒子。尽管具有这种能力,但对于这些纳米粒子的形成所涉及的生物学途径知之甚少。对铂和钯的响应的蛋白质组学分析突出显示了那些参与还原途径和更广泛的应激反应系统的蛋白质。在这两种处理中均发现了一组核心蛋白,共有13种蛋白质,由涉及金属转运和还原的蛋白质组成。还有七种对铂或钯具有特异性的蛋白质。这些铂特异性基因之一NiFe氢化酶小亚基(Dde_2137)的过表达导致形成较大的纳米颗粒。这项研究提高了我们对金属抗药性机制所涉及途径的理解,并为我们提供了有关如何定制细菌以生产纳米颗粒,增强其作为生物修复工具的应用以及从环境中捕获污染金属的途径的信息。

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