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毛细管电泳是监测DNA寡聚物中发夹-无规卷曲转变的灵敏方法。

Capillary electrophoresis is a sensitive monitor of the hairpin-random coil transition in DNA oligomers.

作者信息

Stellwagen Earle, Renze Anne, Stellwagen Nancy C

机构信息

Department of Biochemistry, University of Iowa, Iowa City, IA 52242, USA.

出版信息

Anal Biochem. 2007 Jun 1;365(1):103-10. doi: 10.1016/j.ab.2007.03.007. Epub 2007 Mar 13.

DOI:10.1016/j.ab.2007.03.007
PMID:17416339
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1995437/
Abstract

Capillary electrophoresis (CE) has been used to characterize the hairpin-random coil transition of four octamers in the GCxxxxGC minihairpin family, where xxxx is GAAA, TTTC, TTTT, or AAAA. The transition can be monitored by CE because differences in the frictional coefficients of the hairpin and coil forms of each octamer lead to a difference of approximately 9% in the free solution mobilities of the two conformations. The GAAA octamer is unusually stable, with a melting temperature of 65 degrees C. The TTTT octamer forms a minihairpin with a melting temperature of 29 degrees C, the TTTC octamer has a melting temperature of 16 degrees C, and the AAAA octamer has a melting temperature below 0 degrees C. The thermal transitions of the TTTT, TTTC, and AAAA octamers are well fitted by a structure prediction algorithm; however, the GAAA minihairpin is considerably more stable than predicted. The melting temperature of the GAAA minihairpin is reduced to 47 degrees C in aqueous buffers containing 7.2M urea and to 33 degrees C in buffers containing 7.2M urea plus 40% (v/v) formamide. The combined results indicate that CE is a sensitive technique for monitoring conformational transitions in small DNA molecules.

摘要

毛细管电泳(CE)已被用于表征GCxxxxGC微型发夹家族中四种八聚体的发夹-无规卷曲转变,其中xxxx为GAAA、TTTC、TTTT或AAAA。由于每种八聚体的发夹和卷曲形式的摩擦系数不同,导致两种构象在自由溶液中的迁移率相差约9%,因此可以通过CE监测这种转变。GAAA八聚体异常稳定,解链温度为65℃。TTTT八聚体形成的微型发夹解链温度为29℃,TTTC八聚体的解链温度为16℃,AAAA八聚体的解链温度低于0℃。TTTT、TTTC和AAAA八聚体的热转变能很好地由一种结构预测算法拟合;然而,GAAA微型发夹比预测的要稳定得多。在含有7.2M尿素的水性缓冲液中,GAAA微型发夹的解链温度降至47℃,在含有7.2M尿素加40%(v/v)甲酰胺的缓冲液中降至33℃。综合结果表明,CE是监测小DNA分子构象转变的一种灵敏技术。