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在环境中修饰基因:一项关于 DNA-针铁矿界面的实验研究。

Ironing Out Genes in the Environment: An Experimental Study of the DNA-Goethite Interface.

机构信息

Soil and Crop Sciences, School of Integrative Plant Science, Cornell University , Ithaca, New York 14853, United States.

出版信息

Langmuir. 2017 Aug 29;33(34):8525-8532. doi: 10.1021/acs.langmuir.7b01911. Epub 2017 Aug 15.

Abstract

DNA fate in soil plays an important role in the cycling of genetic information in the environment. Adsorption onto mineral surfaces has great impact on this function. This study probes the kinetics, equilibrium behavior and bonding mechanisms associated with adsorption of DNA onto goethite, a common soil mineral. Surface sensitive ATR-FTIR and XPS approaches are applied to directly characterize the DNA-goethite interface. Adsorption kinetics follow a pseudo-first-order model, suggesting adsorption rate is surface limited. Adsorption rate constants increase with DNA concentration, ranging from 3.29 × 10 to 3.55 × 10 min. Equilibrium adsorption, as monitored by ATR-FTIR and XPS, follows the Langmuir model, with a high affinity of DNA for goethite observed (K = 1.25 × 10 and 9.48 × 10 mL/mg for ATR-FTIR and XPS, respectively). ATR-FTIR and XPS characterization of the structure of surface adsorbed DNA demonstrates inner-sphere coordination between backbone phosphate groups of DNA and goethite. Furthermore, adsorbed DNA retains a B-form, suggesting the DNA helix adsorbs on goethite without degradation or alteration to helical structure, despite binding of backbone phosphate groups. This work advances our understanding of the environmental behavior of DNA by characterizing the mechanism of adsorption onto a prominent soil mineral.

摘要

DNA 在土壤中的命运在环境中遗传信息的循环中起着重要作用。吸附到矿物表面对这一功能有很大的影响。本研究探讨了 DNA 吸附到针铁矿(一种常见的土壤矿物)上的动力学、平衡行为和键合机制。表面敏感的衰减全反射傅里叶变换红外光谱(ATR-FTIR)和 X 射线光电子能谱(XPS)方法被应用于直接表征 DNA-针铁矿界面。吸附动力学遵循准一级模型,表明吸附速率受限于表面。吸附速率常数随 DNA 浓度的增加而增加,范围从 3.29×10^-4 到 3.55×10^-4 min^-1。通过 ATR-FTIR 和 XPS 监测的平衡吸附遵循 Langmuir 模型,观察到 DNA 对针铁矿具有高亲和力(ATR-FTIR 和 XPS 的 K 值分别为 1.25×10 和 9.48×10 mL/mg)。ATR-FTIR 和 XPS 对表面吸附 DNA 结构的表征表明,DNA 骨架磷酸盐与针铁矿之间存在内球配位。此外,吸附的 DNA 保留 B 型构象,表明 DNA 螺旋在针铁矿上吸附,而不会发生降解或螺旋结构的改变,尽管骨架磷酸盐结合。这项工作通过表征吸附到一种主要土壤矿物上的机制,推进了我们对 DNA 环境行为的理解。

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