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Fluorogenic labeling and single-base resolution analysis of 5-formylcytosine in DNA.


ABSTRACT: 5-Formylcytosine (5fC), which plays an important role in epigenetic functions, has received widespread attention in many related fields. Here, we demonstrate a new design for both the fluorogenic switch-on detection and single-base resolution analysis of 5fC through selectively reacting a reagent with 5fC to yield an intramolecular cyclization nucleobase. The generated product, bearing a similar benzothiazole-iminocoumarin scaffold, is highly fluorescent and enables us to qualitatively and quantitatively detect 5fC moieties in ?-irradiated calf thymus DNA. Additionally, losing the exocyclic 4-amino group in 5fC causes the incorporation of dATP through base pairing with the generated nucleobase during polymerase extension, which helped us to analyze the 5fC sites in both single- and double-stranded oligonucleotides. Our Sanger and Illumina sequencing results show great potential in single-base resolution analysis of 5fC. It is hopeful that a similar design may be used for more detection targets.

SUBMITTER: Liu C 

PROVIDER: S-EPMC5674178 | biostudies-literature | 2017 Nov

REPOSITORIES: biostudies-literature

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Fluorogenic labeling and single-base resolution analysis of 5-formylcytosine in DNA.

Liu Chaoxing C   Wang Yafen Y   Yang Wei W   Wu Fan F   Zeng Weiwu W   Chen Zonggui Z   Huang Jinguo J   Zou Guangrong G   Zhang Xiong X   Wang Shaoru S   Weng Xiaocheng X   Wu Zhiguo Z   Zhou Yu Y   Zhou Xiang X  

Chemical science 20170904 11


5-Formylcytosine (5fC), which plays an important role in epigenetic functions, has received widespread attention in many related fields. Here, we demonstrate a new design for both the fluorogenic switch-on detection and single-base resolution analysis of 5fC through selectively reacting a reagent with 5fC to yield an intramolecular cyclization nucleobase. The generated product, bearing a similar benzothiazole-iminocoumarin scaffold, is highly fluorescent and enables us to qualitatively and quant  ...[more]

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