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用抗肿瘤药物顺铂及其无活性类似物反铂化学修饰的DNA的热学和热力学比较研究。

Comparative thermal and thermodynamic study of DNA chemically modified with antitumor drug cisplatin and its inactive analog transplatin.

作者信息

Lando Dmitri Y, Chang Chun-Ling, Fridman Alexander S, Grigoryan Inessa E, Galyuk Elena N, Hsueh Ya-Wei, Hu Chin-Kun

机构信息

Institute of Bioorganic Chemistry, National Academy of Sciences of Belarus, 220141 Minsk, Belarus.

Institute of Physics, Academia Sinica, Nankang, Taipei 11529, Taiwan.

出版信息

J Inorg Biochem. 2014 Aug;137:85-93. doi: 10.1016/j.jinorgbio.2014.04.010. Epub 2014 Apr 29.

Abstract

Antitumor activity of cisplatin is exerted by covalent binding to DNA. For comparison, studies of cisplatin-DNA complexes often employ the very similar but inactive transplatin. In this work, thermal and thermodynamic properties of DNA complexes with these compounds were studied using differential scanning calorimetry (DSC) and computer modeling. DSC demonstrates that cisplatin decreases thermal stability (melting temperature, Tm) of long DNA, and transplatin increases it. At the same time, both compounds decrease the enthalpy and entropy of the helix-coil transition, and the impact of transplatin is much higher. From Pt/nucleotide molar ratio rb=0.001, both compounds destroy the fine structure of DSC profile and increase the temperature melting range (ΔT). For cisplatin and transplatin, the dependences δTm vs rb differ in sign, while δΔT vs rb are positive for both compounds. The change in the parameter δΔT vs rb demonstrates the GC specificity in the location of DNA distortions. Our experimental results and calculations show that 1) in contrast to [Pt(dien)Cl]Cl, monofunctional adducts formed by transplatin decrease the thermal stability of long DNA at [Na(+)]>30mM; 2) interstrand crosslinks of cisplatin and transplatin only slightly increase Tm; 3) the difference in thermal stability of DNA complexes with cisplatin vs DNA complexes with transplatin mainly arises from the different thermodynamic properties of their intrastrand crosslinks. This type of crosslink appears to be responsible for the antitumor activity of cisplatin. At any [Na(+)] from interval 10-210mM, cisplatin and transplatin intrastrand crosslinks give rise to destabilization and stabilization, respectively.

摘要

顺铂的抗肿瘤活性是通过与DNA共价结合来发挥的。为作比较,顺铂-DNA复合物的研究常采用结构非常相似但无活性的反式铂。在本研究中,利用差示扫描量热法(DSC)和计算机模拟研究了DNA与这些化合物形成的复合物的热性质和热力学性质。DSC表明,顺铂会降低长链DNA的热稳定性(解链温度,Tm),而反式铂会提高其热稳定性。同时,两种化合物都会降低螺旋-线圈转变的焓和熵,且反式铂的影响要大得多。当铂/核苷酸摩尔比rb = 0.001时,两种化合物都会破坏DSC图谱的精细结构并增大解链温度范围(ΔT)。对于顺铂和反式铂,δTm与rb的关系符号不同,而δΔT与rb的关系对两种化合物均为正相关。参数δΔT与rb的变化表明了DNA扭曲位置的GC特异性。我们的实验结果和计算表明:1)与[Pt(dien)Cl]Cl不同,反式铂形成的单功能加合物在[Na⁺]>30mM时会降低长链DNA的热稳定性;2)顺铂和反式铂的链间交联仅略微提高Tm;3)DNA与顺铂形成的复合物和DNA与反式铂形成的复合物在热稳定性上的差异主要源于它们链内交联的不同热力学性质。这种交联类型似乎是顺铂具有抗肿瘤活性的原因。在10 - 210mM范围内的任何[Na⁺]浓度下,顺铂和反式铂的链内交联分别导致不稳定和稳定。

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