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两种嗜铬菌素二聚体-DNA寡聚物复合物中的质子交换和内部运动

Proton exchange and internal motions in two chromomycin dimer-DNA oligomer complexes.

作者信息

Leroy J L, Gao X L, Guéron M, Patel D J

机构信息

Groupe de Biophysique, Ecole Polytechnique, Palaiseau, France.

出版信息

Biochemistry. 1991 Jun 11;30(23):5653-61. doi: 10.1021/bi00237a003.

DOI:10.1021/bi00237a003
PMID:1645996
Abstract

Previous structural studies on the complexes of the chromomycin (CHR) dimer with duplexes of d(A1-A2-G3-G4-C5-C6-T7-T8) and of d(A1-G2-G3-A4-T5-C6-C7-T8) in solution [one Mg(II) and two drugs per duplex] are extended to hydrogen exchange measurements. Exchange of the OH8 proton of chromomycin, measured by real time proton-deuterium exchange, is very slow and requires dissociation of the complex, whose lifetime is thus determined. The lifetimes and apparent dissociation constants of base pairs are deduced from the catalysis of imino proton exchange by ammonia. The four central base pairs, which interact with the CHR chromophores in the minor groove (Gao & Patel, 1990), may open within the complex, but the opening rate is less than in the free duplex by one to two orders of magnitude. The activation energy for base-pair opening and the differences between the lifetimes of adjacent pairs suggest that single base-pair opening is the predominant imino proton exchange pathway in all cases. In the symmetrical complex of chromomycin with the first duplex, the lifetimes of the central base pairs (G3.C6 and G4.C5) are in the same range (52 and 29 ms, respectively, at 38 degrees C). In the asymmetrical complex formed with the second duplex, the base-pair lifetimes in the G2-G3-A4-T5 segment that interacts with the chromophore moiety are strongly increased. That of G3.C6 is particularly long. Above 50 degrees C, exchange of the G3 imino proton is opening limited.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

先前对放线菌素(CHR)二聚体与溶液中d(A1 - A2 - G3 - G4 - C5 - C6 - T7 - T8)和d(A1 - G2 - G3 - A4 - T5 - C6 - C7 - T8)双链体复合物的结构研究(每条双链体含一个Mg(II)和两个药物分子)已扩展至氢交换测量。通过实时质子 - 氘交换测量的放线菌素OH8质子的交换非常缓慢,且需要复合物解离,由此确定了复合物的寿命。碱基对的寿命和表观解离常数由氨催化亚氨基质子交换推导得出。与CHR发色团在小沟中相互作用的四个中央碱基对(Gao和Patel,1990)在复合物中可能会打开,但其打开速率比游离双链体低一到两个数量级。碱基对打开的活化能以及相邻碱基对寿命的差异表明,在所有情况下单碱基对打开是主要的亚氨基质子交换途径。在放线菌素与第一个双链体形成的对称复合物中,中央碱基对(G3.C6和G4.C5)的寿命处于相同范围(在38℃时分别为52和29毫秒)。在与第二个双链体形成的不对称复合物中,与发色团部分相互作用的G2 - G3 - A4 - T5片段中的碱基对寿命显著增加。其中G3.C6的寿命特别长。在50℃以上,G3亚氨基质子的交换受限于打开过程。(摘要截断于250字)

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