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无机氧化铁纳米颗粒作为生物催化剂催化的磷酸酯水解。

Hydrolysis of Phosphate Esters Catalyzed by Inorganic Iron Oxide Nanoparticles Acting as Biocatalysts.

机构信息

Independent researcher , Cincinnati, Ohio.

出版信息

Astrobiology. 2018 Mar;18(3):294-310. doi: 10.1089/ast.2016.1628. Epub 2018 Feb 28.

DOI:10.1089/ast.2016.1628
PMID:29489387
Abstract

Phosphorus ester hydrolysis is one of the key chemical processes in biological systems, including signaling, free-energy transaction, protein synthesis, and maintaining the integrity of genetic material. Hydrolysis of this otherwise kinetically stable phosphoester and/or phosphoanhydride bond is induced by enzymes such as purple acid phosphatase. Here, I report that, as in previously reported aged inorganic iron ion solutions, the iron oxide nanoparticles in the solution, which are trapped in a dialysis membrane tube filled with the various iron oxides, significantly promote the hydrolysis of the various phosphate esters, including the inorganic polyphosphates, with enzyme-like kinetics. This observation, along with those of recent studies of iron oxide, vanadium pentoxide, and molybdenum trioxide nanoparticles that behave as mimics of peroxidase, bromoperoxidase, and sulfite oxidase, respectively, indicates that the oxo-metal bond in the oxide nanoparticles is critical for the function of these corresponding natural metalloproteins. These inorganic biocatalysts challenge the traditional concept of replicator-first scenarios and support the metabolism-first hypothesis. As biocatalysts, these inorganic nanoparticles with enzyme-like activity may work in natural terrestrial environments and likely were at work in early Earth environments as well. They may have played an important role in the C, H, O, S, and P metabolic pathway with regard to the emergence and early evolution of life. Key Words: Enzyme-Hydrolysis-Iron oxide-Nanoparticles-Origin of life-Phosphate ester. Astrobiology 18, 294-310.

摘要

磷酯水解是生物系统中的关键化学过程之一,包括信号转导、自由能转换、蛋白质合成以及遗传物质的完整性维持。这种动力学稳定的磷酸酯和/或磷酸酐键的水解是由酶如紫色酸性磷酸酶诱导的。在这里,我报告说,与先前报道的老化无机铁离子溶液一样,溶液中的氧化铁纳米粒子,这些纳米粒子被困在充满各种氧化铁的透析膜管中,显著地以类似于酶的动力学促进各种磷酸盐酯的水解,包括无机多磷酸盐。这一观察结果,以及最近对氧化铁、五氧化二钒和三氧化钼纳米粒子的研究结果,这些纳米粒子分别表现为过氧化物酶、溴过氧化物酶和亚硫酸氧化酶的模拟物,表明氧化物纳米粒子中的氧金属键对于这些相应的天然金属蛋白酶的功能至关重要。这些无机生物催化剂挑战了复制子优先情景的传统概念,并支持代谢优先假说。作为生物催化剂,这些具有类似酶活性的无机纳米粒子可能在自然陆地环境中发挥作用,并且很可能在早期地球环境中也发挥了作用。它们可能在 C、H、O、S 和 P 代谢途径中对于生命的出现和早期进化发挥了重要作用。关键词:酶水解、氧化铁、纳米粒子、生命起源、磷酯。天体生物学 18,294-310。

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