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人工寡聚赖氨酸的核酸结合及其他生物医学特性

Nucleic acid binding and other biomedical properties of artificial oligolysines.

作者信息

Roviello Giovanni N, Vicidomini Caterina, Costanzo Vincenzo, Roviello Valentina

机构信息

CNR Istituto di Biostrutture e Bioimmagini, Via Mezzocannone site and Headquarters.

Centro Regionale di Competenza (CRdC) Tecnologie, Via Nuova Agnano, Napoli, Italy.

出版信息

Int J Nanomedicine. 2016 Nov 10;11:5897-5904. doi: 10.2147/IJN.S121247. eCollection 2016.

Abstract

In the present study, we report the interaction of an artificial oligolysine (referred to as AOL) realized in our laboratory with targets of biomedical importance. These included polyinosinic acid (poly rI) and its complex with polycytidylic acid (poly I:C), RNAs with well-known interferon-inducing ability, and double-stranded (ds) DNA. The ability of the peptide to bind both single-stranded poly rI and ds poly I:C RNAs emerged from our circular dichroism (CD) and ultraviolet (UV) studies. In addition, we found that AOL forms complexes with dsDNA, as shown by spectroscopic binding assays and UV thermal denaturation experiments. These findings are encouraging for the possible use of AOL in biomedicine for nucleic acid targeting and oligonucleotide condensation, with the latter being a key step preceding their clinical application. Moreover, we tested the ability of AOL to bind to proteins, using serum albumin as a model protein. We demonstrated the oligolysine-protein binding by CD experiments which suggested that AOL, positively charged under physiological conditions, binds to the protein regions rich in anionic residues. Finally, the morphology characterization of the solid oligolysine, performed by scanning electron microscopy, showed different crystal forms including cubic-shaped crystals confirming the high purity of AOL.

摘要

在本研究中,我们报告了在我们实验室中制备的一种人工寡聚赖氨酸(称为AOL)与具有生物医学重要性的靶标的相互作用。这些靶标包括聚肌苷酸(poly rI)及其与聚胞苷酸(poly I:C)的复合物、具有众所周知的干扰素诱导能力的RNA以及双链(ds)DNA。我们通过圆二色性(CD)和紫外(UV)研究发现该肽能够结合单链聚肌苷酸和双链聚肌苷酸:聚胞苷酸RNA。此外,光谱结合分析和紫外热变性实验表明,AOL能与双链DNA形成复合物。这些发现对于AOL在生物医学中用于核酸靶向和寡核苷酸缩合是令人鼓舞的,而后者是其临床应用之前的关键步骤。此外,我们以血清白蛋白作为模型蛋白,测试了AOL与蛋白质结合的能力。我们通过CD实验证明了寡聚赖氨酸与蛋白质的结合,这表明在生理条件下带正电荷的AOL与富含阴离子残基的蛋白质区域结合。最后,通过扫描电子显微镜对固态寡聚赖氨酸进行的形态表征显示出不同的晶体形式,包括立方体形晶体,证实了AOL的高纯度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fc9b/5108602/ed1cd1b9df65/ijn-11-5897Fig1.jpg

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