链亲和素涂层的DNA链分离磁珠在细胞selex期间涉及许多问题。

Angela Paul, Meltem Avci-Adali, Gerhard Ziemer, Hans P Wendel
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引用次数: 67

摘要

利用整个活细胞作为SELEX(配体的系统进化,通过指数富集)实验的靶标,是产生细胞受体特异性适配体的一种有前途的方法。这些适体在诊断、治疗、成像、再生医学和靶标验证方面具有巨大的潜力。在选择DNA适体的SELEX过程中,一个重要的步骤是分离两条DNA链,得到其中一条DNA链作为单链DNA适体。这通常是通过生物素标记互补DNA链到所需的适体,然后用链亲和素涂覆的磁珠分离DNA链来完成的。将双链DNA固定在这些磁珠上并进行碱性变性后,非生物素化的DNA链被洗脱,生物素化的DNA链被阻滞。使用Western blot分析,我们证明了共价键链霉亲和素在碱性处理后从球表面分离。洗脱液也被不需要的生物素化链污染。此外,通过流式细胞术和显微镜方法证实了链霉亲和素诱导的靶细胞聚集。由于链霉亲和素引发的聚集和补丁效应,适体的细胞特异性富集是不可能的。因此,使用链霉亲和素涂覆磁珠DNA链分离应进行彻底检查,特别是细胞selex应用。
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Streptavidin-coated magnetic beads for DNA strand separation implicate a multitude of problems during cell-SELEX.

Using whole living cells as a target for SELEX (systematic evolution of ligands by exponential enrichment) experiments represents a promising method to generate cell receptor-specific aptamers. These aptamers have a huge potential in diagnostics, therapeutics, imaging, regenerative medicine, and target validation. During the SELEX for selecting DNA aptamers, one important step is the separation of 2 DNA strands to yield one of the 2 strands as single-stranded DNA aptamer. This is being done routinely by biotin labeling of the complementary DNA strand to the desired aptamer and then separating the DNA strand by using streptavidin-coated magnetic beads. After immobilization of the double-stranded DNA on these magnetic beads and alkaline denaturation, the non-biotinylated strand is being eluted and the biotinylated strand is retarded. Using Western blot analysis, we demonstrated the detachment of covalent-bonded streptavidin from the bead surface after alkaline treatment. The eluates were also contaminated with undesired biotinylated strands. Furthermore, a streptavidin-induced aggregation of target cells was demonstrated by flow cytometry and microscopic methods. Cell-specific enrichment of aptamers was not possible due to clustering and patching effects triggered by streptavidin. Therefore, the use of streptavidin-coated magnetic beads for DNA strand separation should be examined thoroughly, especially for cell-SELEX applications.

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来源期刊
Oligonucleotides
Oligonucleotides 生物-生化与分子生物学
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