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7-氨基放线菌素与缺乏GpC位点的DNA序列的结合:一项热力学和动力学研究。

7-Aminoactinomycin binding to DNA sequences lacking GpC sites: a thermodynamic and kinetic study.

作者信息

Biver Tarita, Venturini Marcella, Jares-Erijman Elizabeth A, Jovin Thomas M, Secco Fernando

机构信息

Dipartimento di Chimica e Chimica Industriale, Universita di Pisa, Via Risorgimento 35, 56126 Pisa, Italy.

出版信息

Biochemistry. 2009 Jan 13;48(1):173-9. doi: 10.1021/bi801671c.

Abstract

The interaction of 7-aminoactinomycin (7AAMD) with selected DNA sequences (TAGTTA, R5, HP5, and HP1) of different lengths and secondary structures, all containing a 5'-TAGT-3' block, was studied at an ionic strength of 0.02 M and pH 7.7 by means of fluorescence equilibrium and kinetic (stopped-flow) measurements. Both approaches indicated that the antibiotic binds strongly to both the single-stranded and hairpin (HP1) structures, although the sequences lacked the canonical GpC sites favored by actinomycin. Binding isotherms and initial rate analyses revealed that the binding stoichiometry was 1:1 in all cases. While the single-stranded sequences displayed a simple monoexponential kinetic behavior, the binding of 7AAMD to HP1 at <30 degrees C was biphasic and could be rationalized in terms of a sequential formation of two isomeric bound forms or alternatively in terms of an ssHP1-hpHP1 equilibrium, with both HP1 forms reacting with 7AAMD. The rates of complex dissociation induced by the detergent SDS were also measured. After correction of the kinetic traces for spurious effects that can be attributed to the SDS, monoexponential traces were obtained, with relaxation times in agreement with the kinetics of complex formation.

摘要

在离子强度为0.02 M、pH值为7.7的条件下,通过荧光平衡和动力学(停流)测量,研究了7-氨基放线菌素(7AAMD)与不同长度和二级结构的选定DNA序列(TAGTTA、R5、HP5和HP1)的相互作用,所有这些序列都含有一个5'-TAGT-3'片段。两种方法均表明,尽管这些序列缺乏放线菌素偏好的典型GpC位点,但该抗生素与单链和发夹结构(HP1)均有强烈结合。结合等温线和初始速率分析表明,在所有情况下结合化学计量比均为1:1。虽然单链序列表现出简单的单指数动力学行为,但在<30℃时7AAMD与HP1的结合是双相的,这可以用两种异构体结合形式的顺序形成来解释,或者用ssHP1-hpHP1平衡来解释,两种HP1形式均与7AAMD反应。还测量了去污剂SDS诱导的复合物解离速率。在对可归因于SDS的虚假效应的动力学曲线进行校正后,得到了单指数曲线,其弛豫时间与复合物形成的动力学一致。

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