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两种DNA十聚体d(CAACGGGTTG)和d(CAACCCGTTG)的DNA双链-发夹相互转换的动力学和热力学表征

Kinetic and thermodynamic characterization of DNA duplex-hairpin interconversion for two DNA decamers: d(CAACGGGTTG) and d(CAACCCGTTG).

作者信息

Avizonis D Z, Kearns D R

机构信息

Department of Chemistry, University of California, San Diego, La Jolla 92037-0343.

出版信息

Biopolymers. 1995 Feb;35(2):187-200. doi: 10.1002/bip.360350207.

Abstract

The duplex-hairpin interconversion of two DNA decamers, d(CAACGGGTTG) and d(CAACCCGTTG), has been characterized thermodynamically and kinetically by using uv-melting and nmr relaxation methods. Separately, each decamer shows slow exchange between hairpin and duplex conformations. The hairpin conformations have melting points of 47 and 50 degrees C, respectively, and exhibit similar thermodynamic stabilities. The enthalpies of duplex formation, measured by nmr, were found to be very similar (delta HDH = 26 +/- 3 kcal/mole) for both decamers at low salt concentrations (< 50 mM NaCl). However, as the salt concentration was increased the behavior of delta HDH and kinetics is significantly different for each decamer. The d(CAACGGGTTG) decamer forms a duplex containing two central G.G mismatches at high salt and DNA concentration. Based upon the measurement of high interconversion activation energies and a decrease in hairpin formation rate with increasing salt, the interconversion between hairpin and duplex was concluded to proceed by complete strand dissociation. In contrast, the d(CAACCCGTTG) decamer was determined to form a duplex with two centrally located C.C mismatches at pH values less than 6.2, consistent with the formation of a hemiprotonated C+.C mismatch. At pH values greater than 6.4, the hairpin-duplex equilibrium is almost completely shifted toward the hairpin conformation at DNA concentrations of 0.5-7.0 mM and salt concentrations of 10-100 mM. The interconversion of duplex and hairpin conformations was ascertained by means of both kinetic and thermodynamic measurements to proceed by a slightly different mechanism than its complementary decamer. Although the interconversion proceeds by complete strand separation as suggested by high duplex-hairpin interconversion activation enthalpies, the increasing hairpin formation rate with increasing ionic strength as well as the delta HDH dependence on salt indicate that an intermediate internally bulged duplex (no C+.C formation) is stabilized by increasing ionic strength. These data support an interconversion mechanism where an intermediate internally bulged duplex may be the rate limiting step before strand separation.

摘要

通过紫外熔解和核磁共振弛豫方法,对两条DNA十聚体d(CAACGGGTTG)和d(CAACCCGTTG)的双链-发夹相互转换进行了热力学和动力学表征。单独来看,每个十聚体在发夹构象和双链构象之间都表现出缓慢的交换。发夹构象的熔点分别为47℃和50℃,并表现出相似的热力学稳定性。在低盐浓度(<50 mM NaCl)下,通过核磁共振测量发现,两条十聚体形成双链的焓非常相似(ΔHDH = 26±3 kcal/mol)。然而,随着盐浓度的增加,每条十聚体的ΔHDH行为和动力学有显著差异。d(CAACGGGTTG)十聚体在高盐和DNA浓度下形成含有两个中心G.G错配的双链。基于高相互转换活化能的测量以及发夹形成速率随盐浓度增加而降低的情况,得出发夹和双链之间的相互转换是通过完全链解离进行的结论。相比之下,d(CAACCCGTTG)十聚体在pH值小于6.2时被确定形成含有两个位于中心的C.C错配的双链,这与形成半质子化的C+.C错配一致。在pH值大于6.4时,在DNA浓度为0.5 - 7.0 mM和盐浓度为10 - 100 mM的情况下,发夹-双链平衡几乎完全向发夹构象移动。通过动力学和热力学测量确定,双链和发夹构象的相互转换通过一种与其互补十聚体略有不同的机制进行。尽管如高双链-发夹相互转换活化焓所表明的那样,相互转换是通过完全链分离进行的,但随着离子强度增加发夹形成速率增加以及ΔHDH对盐的依赖性表明,一种中间的内部凸起双链(无C+.C形成)通过增加离子强度而稳定。这些数据支持一种相互转换机制,其中中间的内部凸起双链可能是链分离之前的限速步骤。

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