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具有更高亲水性和改进水解稳定性的新型丙烯酰胺基单体:III. 在聚(N-丙烯酰氨基丙醇)中通过毛细管电泳进行DNA分离

Novel acrylamido monomers with higher hydrophilicity and improved hydrolytic stability: III. DNA separations by capillary electrophoresis in poly (N-acryloylaminopropanol).

作者信息

Gelfi C, Simò-Alfonso E, Sebastiano R, Citterio A, Righetti P G

机构信息

ITBA, CNR, Milano, Italy.

出版信息

Electrophoresis. 1996 Apr;17(4):738-43. doi: 10.1002/elps.1150170420.

Abstract

Separation of DNA fragments in a novel polymer network, consisting of N-acryloylaminopropanol (AAP) is reported. The performance of this novel monomer, as a sieving liquid polymer in capillary zone electrophoresis, was evaluated. In 50 microns ID capillaries, an 8% solution of poly (AAP) can afford apex-resolution of the 123/124 bp adjacent pair of DNA fragments in marker V, typically unresolved in any poly (acrylamide) formulation. It is proposed that the distal-OH group in the AAP molecule can form transient H-bonds with the DNA double helix. Molecular modeling shows a meandering structure for poly (AAP), lacing the walls of half a cylinder, with kinks protruding at regular intervals, potentially able to fit into the major groove of DNA. Contrary to previously held beliefs, there seems to be a minimum length of the polymer for proper sieving of DNAs. For poly (acrylamides), a weight average molecular mass Mw 30 000 polymer offers no resolution, whereas a polymer of 250 000 to 400 000 Da exhibits optimum resolving power. For poly (AAP), the optimal length is in excess of 450 000 Da in Mw. Thus, it is shown that both the chemical composition of the monomer and the length of the polymer play a subtle, cooperative role in DNA separation.

摘要

本文报道了一种由N-丙烯酰基氨基丙醇(AAP)组成的新型聚合物网络中DNA片段的分离情况。评估了这种新型单体作为毛细管区带电泳中的筛分液体聚合物的性能。在内径为50微米的毛细管中,8%的聚(AAP)溶液能够实现标记物V中123/124 bp相邻DNA片段对的峰分辨率,这在任何聚(丙烯酰胺)配方中通常都是无法实现的。有人提出,AAP分子中的远端羟基可以与DNA双螺旋形成瞬时氢键。分子建模显示聚(AAP)呈蜿蜒结构,缠绕在半个圆柱体的壁上,每隔一定间隔有扭结突出,有可能能够嵌入DNA的大沟中。与之前的观点相反,似乎存在一个聚合物的最小长度,以实现对DNA的适当筛分。对于聚(丙烯酰胺),重均分子量Mw为30000的聚合物没有分辨率,而分子量为250000至400000 Da的聚合物表现出最佳的分辨能力。对于聚(AAP),最佳长度的重均分子量超过450000 Da。因此,结果表明单体的化学组成和聚合物的长度在DNA分离中都起着微妙的协同作用。

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