Vaghi V, Potrich C, Lunelli L, Facci P, Pasquardini L, Vanzetti L, Pederzolli C
Fondazione Bruno Kessler, Laboratory of Biomolecular Sequence and Structure Analysis for Health, via Sommarive 18, I-38123 Povo (Trento), Italy.
Fondazione Bruno Kessler, Laboratory of Biomolecular Sequence and Structure Analysis for Health, via Sommarive 18, I-38123 Povo (Trento), Italy; CNR - Consiglio Nazionale delle Ricerche, Istituto di Biofisica, via alla Cascata 56/C, I-38123 Povo (Trento), Italy.
Colloids Surf B Biointerfaces. 2016 Oct 1;146:746-53. doi: 10.1016/j.colsurfb.2016.06.059. Epub 2016 Jul 2.
MicroRNAs (miRNAs) are endogenous, small (18-24nt), non-coding RNAs that regulate gene expression. Among miRNAs, those bound to the AGO2 protein are the functionally active fraction which mediates the cell regulatory processes and regulate messages exchanged by cells. Several methods have been developed to purify this fraction of microRNAs, such as immunoprecipitation and immunoprecipitation-derived techniques. However, all these techniques are generally recognized as technically complicated and time consuming. Here, a new bio-functional surface for the specific capture of AGO2-bound microRNAs is proposed. Starting from a silicon oxide surface, a protein A layer was covalently bound via epoxy chemistry to orient specific anti-AGO2 antibodies on the surface. The anti-AGO2 antibodies captured the AGO2 protein present in cell lysate and in human plasma. The AGO2-bound microRNAs were then released by enzymatic digestion and detected via RT-qPCR. Control surfaces were also prepared and tested. Every step in the preparation of the bio-functional surfaces was fully characterized from the chemical, morphological and functional point of view. The resulting bio-functional surface is able to specifically capture the AGO2-bound miRNAs from biologically-relevant samples, such as cell lysate and human plasma. These samples contain different proportions of AGO2-bound microRNAs, as reliably detected with the immunocapture method here proposed. This work opens new perspectives for a simple and faster method to isolate not only AGO2-bound microRNAs, but also the multiprotein complex containing AGO2 and miRNAs.
微小RNA(miRNA)是一类内源性的小(18 - 24个核苷酸)非编码RNA,可调节基因表达。在miRNA中,与AGO2蛋白结合的那些是功能活性部分,介导细胞调节过程并调控细胞间交换的信息。已经开发了几种方法来纯化这部分微小RNA,如免疫沉淀和免疫沉淀衍生技术。然而,所有这些技术通常被认为在技术上复杂且耗时。在此,提出了一种用于特异性捕获与AGO2结合的微小RNA的新型生物功能表面。从氧化硅表面开始,通过环氧化学共价结合蛋白A层,以使表面上的特异性抗AGO2抗体定向。抗AGO2抗体捕获细胞裂解物和人血浆中存在的AGO2蛋白。然后通过酶消化释放与AGO2结合的微小RNA,并通过RT-qPCR进行检测。还制备并测试了对照表面。从化学、形态和功能角度对生物功能表面制备的每一步进行了充分表征。所得的生物功能表面能够从生物相关样品(如细胞裂解物和人血浆)中特异性捕获与AGO2结合的miRNA。这些样品含有不同比例的与AGO2结合的微小RNA,如通过本文提出的免疫捕获方法可靠检测到的那样。这项工作为一种简单、快速的方法开辟了新的前景,该方法不仅可以分离与AGO2结合的微小RNA,还可以分离包含AGO2和miRNA的多蛋白复合物。