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首页> 外文期刊>Biochimica et Biophysica Acta. General Subjects >Structural optimization of an aptamer generated from Ligand-Guided Selection (LIGS) resulted in high affinity variant toward mIgM expressed on Burkitt's lymphoma cell lines
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Structural optimization of an aptamer generated from Ligand-Guided Selection (LIGS) resulted in high affinity variant toward mIgM expressed on Burkitt's lymphoma cell lines

机译:从配体引导的选择(LIG)产生的适体的结构优化导致在Burkitt的淋巴瘤细胞系上表达的含量高亲和力变体

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Aptamers are synthetic, short nucleic acid molecules capable of specific target recognition. Aptamers are selected using a screening method termed Systematic Evolution of Ligands by Exponential enrichment (SELEX). We recently have introduced a variant of SELEX called "Ligand-Guided-Selection" (LIGS) that allows the identification of specific aptamers against known cell-surface proteins. Utilizing LIGS, we introduced three specific aptamers against membrane-bound IgM (mIgM), which is the hallmark of B cells. Out of the three aptamers selected against mIgM, an aptamer termed R1, in particular, was found to be interesting due to its ability to recognize mIgM on target cells and then block anti-IgM antibodies binding their antigen. We systematically truncated parent aptamer R1 to design shorter variants with enhanced affinity. Importantly, herein we show that the specificity of the most optimized variant of R1 aptamer is similar to that of anti-IgM antibody, indicating that the specificity of the ligand utilized in selective elution of the aptamer determines the specificity of the LIGS-generated aptamer. Furthermore, we report that truncated variants of R1 are able to recognize mIgM-positive human B lymphoma BJAB cells at physiological temperature, demonstrating that LIGS-generated aptamers could be re-optimized into higher affinity variants. Collectively, these findings show the significance of LIGS in generating highly specific aptamers with potential applications in biomedicine.
机译:适体是合成的,短核酸分子能够特异的目标识别。使用指数富集(SELEX)使用筛选方法来选择适体的配体的系统演化。我们最近引入了一个称为“配体引导选择”(LIG)的SELEX变型,允许针对已知的细胞表面蛋白鉴定特异性适体。利用Lig,我们引入了三种特异性适体,抵抗膜结合的IgM(MIGM),这是B细胞的标志。在针对含量的三个适体中,由于其识别靶细胞上的含量,并且嵌入其结合其抗原的抗-IgM抗体的能力,发现了一种归因于R1的适体归因于R1。我们系统地截断了父APTamer R1以设计具有增强亲和力的更短的变体。重要的是,在本文中,我们表明R1适体的最优化变体的特异性类似于抗IgM抗体的特异性,表明在适体的选择性洗脱中使用的配体的特异性决定了韧带产生的适体的特异性。此外,我们报告称R1的截短变体能够在生理温度下识别MIGM阳性人B淋巴瘤细胞,证明可以重新优化Lig生成的适体变为更高的亲和变体。集体,这些发现表明,LIG在生物医学中的潜在应用中产生高度特异性适体的重要性。

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