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首页> 外文期刊>Biomacromolecules >Self-Assembled Nucleic Acid Nanoparticles Capable of Controlled Disassembly in Response to a Single Nucleotide Mismatch
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Self-Assembled Nucleic Acid Nanoparticles Capable of Controlled Disassembly in Response to a Single Nucleotide Mismatch

机译:自组装核酸纳米粒子能够控制单个核苷酸错配的控制拆卸。

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We have demonstrated the self-assembled DNA nanoparticles capable of controlled disassembly in response to a single nucleotide change (SNC) in a target nucleic acid. The DNA nanoparticles (avg diameter = 51 ±22 mn) were constructed by joining two types of streptavidin-DNA conjugates with 2 molar equiy of a linker strand that carries complementary sequences to both conjugates. Nanoparticle disassembly triggered by a target strand (i.e., a perfect complement to the linker) selectively over mismatched targets was achieved by kinetically controlled nucleation occurring at a 6-nt overhang in the linker. The disassembly process was shown to be dramatically slowed down when using mismatch targets in which the SNC was positioned at the fourth nucleotide from the 3'-end. To verify whether the controlled disassembly also works for a SNC located in the middle of a target strand, we tested a deleterious Z variant (G1024A) of human α1 -antitrypsin as a mismatch target (60-nt) carrying the point mutation at position 39. The wild-type target completed the disassembly process in less than 10 min, whereas the mismatch Z-type target could not complete the disassembly even in 3 h. The DNA nanoparticles are promising for sequence-dependent controlled release of short nucleic acids, including siRNA and aiitisense oligonucleotides, and construction of smart nanomaterials capable of sensing and processing single-nucleotide polymorphisms.
机译:我们已经证明了自组装的DNA纳米颗粒能够响应目标核酸中的单个核苷酸变化(SNC)来控制拆卸。通过将两种类型的链霉亲和素-DNA共轭物与2摩尔当量的带有两个共轭物的互补序列的接头链连接起来,构建了DNA纳米颗粒(平均直径= 51±22 mn)。通过在接头的6-nt突出端发生的动力学控制的成核作用,在不匹配的靶标上选择性地由靶链(即,对接头的完美互补)触发了纳米粒子的分解。当使用错配靶标(其中SNC位于3'末端的第四个核苷酸)时,拆卸过程显着减慢。为了验证受控拆卸是否也适用于位于靶链中间的SNC,我们测试了人类α1-抗胰蛋白酶的有害Z变体(G1024A)作为错配靶标(60-nt)的携带位点突变的位置39野生型靶标在不到10分钟的时间内完成了拆卸过程,而错配的Z型靶标甚至在3小时内也无法完成拆卸。 DNA纳米颗粒有望用于包括siRNA和AI的寡核苷酸在内的短核酸的序列依赖性控制释放,以及能够检测和处理单核苷酸多态性的智能纳米材料的构建。

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