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首页> 外文期刊>Angewandte Chemie >Transcription of Click-Linked DNA in Human Cells
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Transcription of Click-Linked DNA in Human Cells

机译:点击链接的DNA在人类细胞中的转录

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摘要

Click DNA ligation promises an alternative to the current enzymatic approaches for DNA assembly, with the ultimate goal of using efficient chemical reactions for the total chemical synthesis and assembly of genes and genomes. Such an approach would enable the incorporation of various chemically modified bases throughout long stretches of DNA, a feat not possible with current polymerase-based methods. An unequivocal requirement for this approach is the biocompatibility of the resulting triazole-linked DNA. The correct function of this unnatural DNA linker in human cells is demonstrated here by using a click-linked gene encoding the fluorescent protein mCherry. Reverse transcription of mRNA isolated from these cells and subsequent sequencing of the mCherry cDNA shows error-free transcription. Nucleotide excision repair (NER) is shown to not play a role in the observed biocompatibility by using a NER-deficient human cell line. This is the first example of a non-natural DNA linker being functional in a eukaryotic cell.
机译:Click DNA连接有望为目前的DNA组装酶促方法提供替代方法,其最终目标是利用有效的化学反应进行基因和基因组的整体化学合成和组装。这种方法将能够在DNA的长片段中掺入各种化学修饰的碱基,这是当前基于聚合酶的方法无法实现的。这种方法的明确要求是所得三唑连接的DNA的生物相容性。通过使用编码荧光蛋白mCherry的点击链接基因,可以证明这种非天然DNA接头在人细胞中的正确功能。从这些细胞分离的mRNA的反转录和随后的mCherry cDNA测序显示无错误转录。通过使用NER缺陷型人类细胞系,已显示核苷酸切除修复(NER)在观察到的生物相容性中不起作用。这是非天然DNA接头在真核细胞中起作用的第一个例子。

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