Effect of methylation on the electrophoretic mobility of chromosomal DNA in pulsed-field agarose gels.

S Xydas, C S Lange, D Phil, H C Neimark
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Abstract

Factors other than molecular weight are known to affect DNA electrophoretic mobility. DNA methylation has been found to affect the curvature of DNA, causing anomalous mobility in polyacrylamide gels; the effect of methylation on the mobility of large DNA molecules in agarose gels was unknown. Chromosomal DNA from Mycoplasma capricolum, a wall-less prokaryote which has a low intrinsic methylation rate, was methylated in agarose blocks by SssI methylase, a de novo methylase with a CpG recognition sequence. (A surprising finding was that SssI methylase altered the structure of InCert, but not SeaKem Gold, agarose.) Restriction enzyme analysis was used to estimate the extent of CpG methylation. DNA methylation was found to have no effect on the electrophoretic mobility of full-length chromosomal DNA (1,120 kbp) in agarose gels. Therefore, methylation is not a source of error in PFGE-based size estimation for chromosomal DNA molecules less than 1.12 Mbp in agarose gels.

甲基化对脉冲场琼脂糖凝胶中染色体DNA电泳迁移率的影响。
已知分子量以外的因素会影响DNA的电泳迁移率。已经发现DNA甲基化会影响DNA的曲率,导致聚丙烯酰胺凝胶中的异常迁移;甲基化对琼脂糖凝胶中大DNA分子迁移的影响尚不清楚。来自山羊支原体的染色体DNA是一种无壁的原核生物,具有较低的内在甲基化率,通过SssI甲基化酶在琼脂糖块中甲基化,SssI甲基化酶是一种具有CpG识别序列的新甲基化酶。(一个令人惊讶的发现是,SssI甲基化酶改变了InCert的结构,但没有改变SeaKem Gold琼脂糖的结构。)使用限制性内切酶分析来估计CpG甲基化的程度。发现DNA甲基化对全长染色体DNA (1,120 kbp)在琼脂糖凝胶中的电泳迁移率没有影响。因此,对于琼脂糖凝胶中小于1.12 Mbp的染色体DNA分子,甲基化不是基于pfge的大小估计的错误来源。
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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