微流控分子拉伸技术测量CpG超甲基化时DNA长度的变化。

Cell medicine Pub Date : 2016-09-14 eCollection Date: 2017-01-08 DOI:10.3727/215517916X693087
Daisuke Onoshima, Naoko Kawakita, Daiki Takeshita, Hirohiko Niioka, Hiroshi Yukawa, Jun Miyake, Yoshinobu Baba
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引用次数: 2

摘要

富含cpg的启动子异常DNA甲基化被认为是癌症前体病变的一个明显的分子特征。这种意想不到的甲基化可能发生在干细胞的体外分化过程中。在一般培养条件下,在干细胞衍生物分化或扩增过程中,它发生在一个基因子集中,这可能需要在未来的细胞移植研究中进行监测。在这里,我们展示了一种用于研究DNA甲基化形态长度变化的微流体装置。在微流控通道中,通过平行捕获和拉伸,荧光观察到单个DNA分子排列的聚合物链。这项观察性研究表明,缩短的DNA长度是由于甲基化DNA分子的刚性增加。该装置对DNA分子的捕获率基本上不受CpG甲基化变化的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Measurement of DNA Length Changes Upon CpG Hypermethylation by Microfluidic Molecular Stretching.

Measurement of DNA Length Changes Upon CpG Hypermethylation by Microfluidic Molecular Stretching.

Measurement of DNA Length Changes Upon CpG Hypermethylation by Microfluidic Molecular Stretching.

Measurement of DNA Length Changes Upon CpG Hypermethylation by Microfluidic Molecular Stretching.

Abnormal DNA methylation in CpG-rich promoters is recognized as a distinct molecular feature of precursor lesions to cancer. Such unintended methylation can occur during in vitro differentiation of stem cells. It takes place in a subset of genes during the differentiation or expansion of stem cell derivatives under general culture conditions, which may need to be monitored in future cell transplantation studies. Here we demonstrate a microfluidic device for investigating morphological length changes in DNA methylation. Arrayed polymer chains of single DNA molecules were fluorescently observed by parallel trapping and stretching in the microfluidic channel. This observational study revealed that the shortened DNA length is due to the increased rigidity of the methylated DNA molecule. The trapping rate of the device for DNA molecules was substantially unaffected by changes in the CpG methylation.

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Cell medicine
Cell medicine MEDICINE, RESEARCH & EXPERIMENTAL-
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