Laboratório de Física Biológica, Departamento de Física, Universidade Federal de Viçosa. Viçosa, Minas Gerais, Brazil.
Phys Rev E. 2017 Sep;96(3-1):032408. doi: 10.1103/PhysRevE.96.032408. Epub 2017 Sep 11.
In the present work we have gone a step forward in the understanding of the DNA-cisplatin interaction, investigating the role of the ionic strength on the complexes formation. To achieve this task, we use optical tweezers to perform force spectroscopy on the DNA-cisplatin complexes, determining their mechanical parameters as a function of the drug concentration in the sample for three different buffers. From such measurements, we determine the binding parameters and study their behavior as a function of the ionic strength. The equilibrium binding constant decreases with the counterion concentration ([Na]) and can be used to estimate the effective net charge of cisplatin in solution. The cooperativity degree of the binding reaction, on the other hand, increases with the ionic strength, as a result of the different conformational changes induced by the drug on the double-helix when binding under different buffer conditions. Such results can be used to modulate the drug binding to DNA, by appropriately setting the ionic strength of the surrounding buffer. The conclusions drawn provide significant new insights on the complex cooperative interactions between the DNA molecule and the class of platinum-based compounds, much used in chemotherapies.
在目前的工作中,我们在理解 DNA-顺铂相互作用方面又向前迈进了一步,研究了离子强度对复合物形成的作用。为了实现这一任务,我们使用光学镊子在 DNA-顺铂复合物上进行力谱学研究,确定了它们的机械参数作为样品中药物浓度的函数,对于三种不同的缓冲液。从这些测量中,我们确定了结合参数,并研究了它们作为离子强度函数的行为。平衡结合常数随抗衡离子浓度([Na])的降低而降低,并且可以用于估计顺铂在溶液中的有效净电荷。另一方面,结合反应的协同度随离子强度的增加而增加,这是由于在不同的缓冲条件下结合时,药物对双螺旋引起的不同构象变化所致。通过适当设置周围缓冲液的离子强度,可以用于调节药物与 DNA 的结合。所得到的结论为理解 DNA 分子与多用作化疗药物的铂类化合物之间的复杂协同相互作用提供了重要的新见解。