Literature DB >> 1783622

Anion-exchange chromatography of DNA restriction fragments.

M A Strege1, A L Lagu.   

Abstract

The abilities of several high-performance liquid chromatography (HPLC) anion-exchange packings to separate DNA restriction fragments, ranging in size from 50 to 23,000 base pairs, were studied. The ion exchangers investigated include the porous packings Protein-Pak DEAE-5PW, Nucleogen-DEAE 4000-7, Poros-Q and BakerBond WP-PEI, and the non-porous packings TSK Gel DEAE-NPR, Gen-Pak FAX, and ProPac PA1. The results indicated that the non-porous packings could separate all 18 fragments (less than 600 base pairs) in a pBR322 DNA-HaeIII digest, while of the porous packings, only Nucleogen-DEAE 4000-7 could resolve DNA fragments in this size range. Only Gen-Pak FAX and TSK Gel DEAE-NPR could significantly resolve the very large DNA fragments (125-23,000 base pairs) of a lambda DNA-HindIII digest. The chromatographic parameters governing this separation by Gen-Pak FAX were optimized so that six of eight fragments were resolved. Split-peak phenomena were observed at low flow-rates when employing non-poros packings, but were eliminated by the incorporation of organic modifiers or surfactants, suggesting that, under certain conditions, hydrophobicity may play a significant role in separations on this packing. Gen-Pak FAX also separated 21 of 23 fragments in a 1000-base pair DNA ladder, a performance which, in addition to the quantitative capabilities of HPLC, makes anion-exchange chromatography a powerful method complementary to slab-gel electrophoresis, and perhaps preferable over agarose gel electrophoresis for applications such as the confirmation of plasmid integrity.

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Year:  1991        PMID: 1783622     DOI: 10.1016/s0021-9673(01)87171-5

Source DB:  PubMed          Journal:  J Chromatogr


  2 in total

1.  Effective and robust plasmid topology analysis and the subsequent characterization of the plasmid isoforms thereby observed.

Authors:  Michael J Molloy; Valerie S Hall; Susannah I Bailey; Katharine J Griffin; Jim Faulkner; Mark Uden
Journal:  Nucleic Acids Res       Date:  2004-09-09       Impact factor: 16.971

2.  Novel method for DNA methylation analysis using high-performance liquid chromatography and its clinical application.

Authors:  Takuya Yotani; Yuriko Yamada; Eri Arai; Ying Tian; Masahiro Gotoh; Motokiyo Komiyama; Hiroyuki Fujimoto; Michiie Sakamoto; Yae Kanai
Journal:  Cancer Sci       Date:  2018-04-17       Impact factor: 6.716

  2 in total

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