Department of Chemistry, University of Vermont, Burlington, Vermont05405, United States.
Department of Chemistry and Biochemistry, Siena College, Loudonville, New York12211, United States.
J Phys Chem B. 2022 Oct 27;126(42):8404-8414. doi: 10.1021/acs.jpcb.2c04939. Epub 2022 Oct 12.
Establishing how polymeric vectors such as polyethylenimine (PEI) bind and package their nucleic acid cargo is vital toward developing more efficacious and cost-effective gene therapies. To develop a molecular-level picture of DNA binding, we examined how the Raman spectra of PEIs report on their local chemical environment. We find that the intense Raman bands located in the 1400-1500 cm region derive from vibrations with significant CH scissoring and NH bending character. The Raman bands that derive from these vibrations show profound intensity changes that depend on both the local dielectric environment and hydrogen bonding interactions with the secondary amine groups on the polymer. We use these bands as spectroscopic markers to assess the binding between low molecular weight PEIs and single-stranded DNA (ssDNA). Analysis of the Raman spectra suggest that PEI primarily binds via electrostatic interactions to the phosphate backbone, which induces the condensation of the ssDNA. We additionally confirm this finding by conducting molecular dynamics simulations. We expect that the spectral correlations determined here will enable future studies to investigate important gene delivery activities, including how PEI interacts with cellular membranes to facilitate cargo internalization into cells.
建立聚合物载体(如聚乙烯亚胺(PEI))如何结合和包裹其核酸货物对于开发更有效和更具成本效益的基因治疗方法至关重要。为了从分子水平上了解 DNA 结合情况,我们研究了 PEI 的拉曼光谱如何反映其局部化学环境。我们发现,位于 1400-1500cm 区域的强拉曼带源自具有显著 CH 剪断和 NH 弯曲特征的振动。这些振动产生的拉曼带表现出强烈的强度变化,这取决于局部介电环境以及与聚合物上仲胺基团的氢键相互作用。我们将这些带用作光谱标记来评估低分子量 PEI 与单链 DNA(ssDNA)之间的结合。拉曼光谱分析表明,PEI 主要通过静电相互作用与磷酸骨架结合,这诱导了 ssDNA 的凝聚。我们通过进行分子动力学模拟进一步证实了这一发现。我们期望这里确定的光谱相关性将使未来的研究能够调查重要的基因传递活性,包括 PEI 如何与细胞膜相互作用以促进货物内吞进入细胞。