通过新的表达载体产生的10-23 DNA酶介导巨噬细胞中taco的表达抑制。

Junming Li, Na Wang, Qing Luo, Lagen Wan
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引用次数: 11

摘要

10-23 DNA酶(10-23 DNAzyme)是一种单链DNA (ssDNA)分子,可以有效和特异性地切割几乎任何目标RNA分子。因此,它被认为是基因治疗中很有前途的工具之一。但其应用仍存在细胞吸收效率低、体内不稳定等障碍。利用Moloney小鼠白血病病毒(MMLV)逆转录酶(RT)的作用机制,构建了一种新的ssDNA表达载体。为了提高表达效率,在2个分离启动子的控制下,将mmlv-rt基因和ODN-PMT(一种包含生成ssDNA必需序列的寡脱氧核苷酸)克隆到一个质粒中。通过构建含色氨酸-天冬氨酸外衣蛋白(taco)基因特异性10-23 DNAzyme表达质粒,验证了该载体在哺乳动物细胞中产生特异性10-23 DNAzyme的能力。我们还研究了表达的10-23 DNAzyme抑制TACO表达的潜力。我们的结果表明,该载体在哺乳动物细胞中产生所需的10-23 DNAzyme。以10-23 DNAzyme为靶点表达的taco基因在mRNA水平(78.26%)和蛋白水平(75.30%)上均可降低taco的表达。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The 10-23 DNA enzyme generated by a novel expression vector mediate inhibition of taco expression in macrophage.

The 10-23 DNA enzyme (10-23 DNAzyme), a single-stranded DNA (ssDNA) molecule, can efficiently and specifically cleave almost any target RNA molecules. Therefore, it is regarded as one of the promising tools in gene therapy. However, there are still some obstacles, such as low efficiency of cellular uptake and instability in vivo, in its application. Taking advantage of the mechanism of Moloney mouse leukemia virus (MMLV) reverse transcriptase (RT), we investigate the construction of a novel ssDNA expression vector in this study. In order to improve the expression efficiency, the mmlv-rt gene and ODN-PMT (an oligodeoxynucleotide including other essential sequences for generating ssDNA) were cloned into a single plasmid under the control of 2 separated promoters. The ability of the vector to generate specific 10-23 DNAzyme in mammalian cell was tested by constructing a tryptophan-aspartate-containing coat protein (taco) gene-specific 10-23 DNAzyme expression plasmid. The potential of the expressed 10-23 DNAzyme to suppress TACO expression was also investigated. Our results indicated that this vector generates desired 10-23 DNAzyme in mammalian cells. The expressed 10-23 DNAzyme targeting taco gene can reduce TACO expression both at mRNA level (by 78.26%) and at protein level (by 75.30%).

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Oligonucleotides
Oligonucleotides 生物-生化与分子生物学
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