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首页> 外文期刊>ACS Synthetic Biology >Converting a Natural Protein Compartment into a Nanofactory for the Size-Constrained Synthesis of Antimicrobial Silver Nanoparticles
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Converting a Natural Protein Compartment into a Nanofactory for the Size-Constrained Synthesis of Antimicrobial Silver Nanoparticles

机译:将天然蛋白隔室转换为纳米工厂的抗菌银纳米颗粒的尺寸受限合成。

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Engineered biological systems are used extensively for the production of high value and commodity organics. On the other hand, most inorganic nanomaterials are still synthesized via chemical routes. By engineering cellular compartments, functional nanoarchitectures can be produced under environmentally sustainable conditions. Encapsulins are a new class of microbial nanocompartments with promising applications in nanobiotechnology. Here, we engineer the Thermotoga maritima encapsulin EncTm to yield a designed compartment for the size-constrained synthesis of silver nanoparticles (Ag NPs). These Ag NPs exhibit uniform shape and size distributions as well as long-term stability. Ambient aqueous conditions can be used for Ag NP synthesis, while no reducing agents or solvents need to be added. The antimicrobial activity of the synthesized protein-coated or shell-free Ag NPs is superior to that of silver nitrate and citrate-capped Ag NPs. This study establishes encapsulins as an engineerable platform for the synthesis of biogenic functional nanomaterials.
机译:工程生物系统被广泛用于生产高价值和商品有机物。另一方面,大多数无机纳米材料仍是通过化学途径合成的。通过工程化细胞隔室,可以在环境可持续的条件下生产功能性纳米结构。胶囊蛋白是一类新型的微生物纳米隔室,在纳米生物技术中具有广阔的应用前景。在这里,我们工程化了滨海嗜热菌囊蛋白EncTm,以产生一个设计隔室,用于大小受限的银纳米颗粒(Ag NPs)合成。这些Ag NP表现出均匀的形状和尺寸分布以及长期稳定性。 Ag NP的合成可以使用周围环境条件,而无需添加还原剂或溶剂。合成的蛋白包被或无壳的Ag NPs的抗菌活性优于硝酸银和柠檬酸盐封端的Ag NPs。这项研究建立了胶囊蛋白作为生物功能纳米材料合成的工程平台。

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