Hofr Ctirad, Brabec Viktor
Institute of Biophysics, Academy of Sciences of the Czech Republic, Kralovopolska 135, CZ-61265 Brno, Czech Republic.
Biopolymers. 2005 Mar;77(4):222-9. doi: 10.1002/bip.20216.
The effect of the location of the interstrand cross-link formed by trans-diamminedichloroplatinum(II) (transplatin) on the thermal stability and energetics of 15-mer DNA duplex has been investigated. The duplex containing single, site-specific cross-link, thermodynamically equivalent model structures (hairpins) and nonmodified duplexes were characterized by differential scanning calorimetry, temperature-dependent uv absorption, and circular dichroism. The results demonstrate that the formation of the interstrand cross-link of transplatin does not affect pronouncedly thermodynamic stability of DNA: the cross-link induces no marked changes not only in enthalpy, but also in "reduced" (concentration independent) monomolecular transition entropy. These results are consistent with the previous observations that interstrand cross-links of transplatin structurally perturb DNA only to a relatively small extent. On the other hand, constraining the duplex with the interstrand cross-link of transplatin results in a significant increase in thermal stability that is primarily due to entropic effects: the cross-link reduces the molecularity of the oligomer system from bimolecular to monomolecular. Importantly, the position of the interstrand cross-link within the duplex modulates cooperativity of the melting transition of the duplex and consequently its thermal stability.
已研究了反式二氯二氨合铂(II)(反式铂)形成的链间交联位置对15聚体DNA双链体热稳定性和能量学的影响。通过差示扫描量热法、温度依赖性紫外吸收和圆二色性对含有单个位点特异性交联的双链体、热力学等效模型结构(发夹)和未修饰的双链体进行了表征。结果表明,反式铂链间交联的形成不会显著影响DNA的热力学稳定性:该交联不仅在焓方面没有引起明显变化,而且在“降低的”(与浓度无关的)单分子转变熵方面也没有引起明显变化。这些结果与之前的观察结果一致,即反式铂的链间交联在结构上仅对DNA造成相对较小程度的扰动。另一方面,用反式铂的链间交联限制双链体会导致热稳定性显著增加,这主要是由于熵效应:该交联将寡聚物系统的分子性从双分子降低到单分子。重要的是,双链体内链间交联的位置调节双链体熔解转变的协同性,从而调节其热稳定性。