Design and synthesis of fluorescent-dye-labeled nucleotide with a new cleavable azo linker for DNA sequencing by synthesis†

IF 2.7 3区 化学 Q1 CHEMISTRY, ORGANIC
Bo-Wei Tang, Ping-Yang Wang and Yu-Mei Shen
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引用次数: 0

Abstract

A new cleavable azo linker was synthesized and reacted with 5-iodo-2′-deoxyuridine, followed by triphosphorylation, and finally labeled with Cy3 to give the desired product dUTP-azo linker-Cy3 as a potential reversible terminator for DNA sequencing. The synthesized 3′-OH-unblocked nucleotide triphosphate can be faithfully incorporated into the DNA strands as catalyzed by DNA polymerase (Bst 3.0) with 100% yield. Meanwhile, further incorporation is terminated temporarily by the overall steric hindrance of the nucleotide triphosphate, ensuring that only one molecule can be incorporated into the DNA strand within one sequencing cycle even for a template containing multiple identical bases in a row. The next incorporation can proceed smoothly upon complete removal of the labeled dye with only aniline left on the elongated DNA strand. The synthesized nucleotide triphosphate is the first reversible terminator that can be considered crucial for DNA sequening. These preliminary evaluations indicate that the synthesized nucleotide triphosphate holds substantial potential value in DNA sequencing.

Abstract Image

荧光染料标记核苷酸的设计与合成,具有新的可切割偶氮连接体,用于DNA的合成测序。
合成了一种新的可切割偶氮连接物,并与5-碘-2'-脱氧尿嘧啶反应,然后进行三磷酸化,最后用Cy3标记得到所需产物dutp -偶氮连接物Cy3,作为DNA测序的潜在可逆终止物。在DNA聚合酶(Bst 3.0)的催化下,合成的3'- oh无阻断的三磷酸核苷酸能完整地结合到DNA链中,产率为100%。同时,进一步的整合被三磷酸核苷酸的整体位阻暂时终止,确保在一个测序周期内只有一个分子可以被整合到DNA链中,即使是包含多个相同碱基的模板也是如此。下一个合并可以顺利进行,在完全去除标记的染料,只有苯胺留在延长的DNA链上。合成的三磷酸核苷酸是第一个可逆终止体,可被认为对DNA测序至关重要。这些初步评价表明,合成的三磷酸核苷酸在DNA测序中具有巨大的潜在价值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Organic & Biomolecular Chemistry
Organic & Biomolecular Chemistry 化学-有机化学
CiteScore
5.50
自引率
9.40%
发文量
1056
审稿时长
1.3 months
期刊介绍: Organic & Biomolecular Chemistry is an international journal using integrated research in chemistry-organic chemistry. Founded in 2003 by the Royal Society of Chemistry, the journal is published in Semimonthly issues and has been indexed by SCIE, a leading international database. The journal focuses on the key research and cutting-edge progress in the field of chemistry-organic chemistry, publishes and reports the research results in this field in a timely manner, and is committed to becoming a window and platform for rapid academic exchanges among peers in this field. The journal's impact factor in 2023 is 2.9, and its CiteScore is 5.5.
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