Keller Karin M, Zhang Junmei, Oehlers Leon, Brodbelt Jennifer S
Department of Chemistry and Biochemistry, The University of Texas at Austin, Austin TX 78712, USA.
J Mass Spectrom. 2005 Oct;40(10):1362-71. doi: 10.1002/jms.927.
The charge state-dependent dissociation of various DNA duplexes and drug/duplex complexes has been investigated using collisionally activated dissociation (CAD) in a quadrupole ion trap mass spectrometer (QIT-MS). Several non-self-complementary 14-residue oligonucleotides were employed, in addition to an array of known DNA-interactive ligands, including the intercalators daunomycin and nogalamycin, as well as the minor groove binding agents distamycin, netropsin, 4',6-diamidino-2-phenylindole, and Hoechst 33342. In general, the dissociation pathways exhibited by both the duplexes and the drug/duplex complexes were found to be markedly sensitive to initial charge state. Time- and activation voltage-independent duplex strand separation predominated for higher charge states, which was interpreted to be a result of internal Coulombic repulsion or partial unzipping in the interface, while time- and activation voltage-dependent covalent cleavage predominated for lower charge states. The identity of the drug and the sequence of the duplex were both found to affect the competition between different dissociation processes. The dissociation pathways for the lower charge state complexes are probably more reflective of specific drug-DNA interactions because Coulombic and/or conformational effects are less marked for these precursors.
利用四极杆离子阱质谱仪(QIT-MS)中的碰撞激活解离(CAD)技术,研究了各种DNA双链体以及药物/双链体复合物的电荷态依赖性解离。除了一系列已知的与DNA相互作用的配体之外,还使用了几种非自互补的14个残基的寡核苷酸,这些配体包括嵌入剂柔红霉素和诺加霉素,以及小沟结合剂偏端霉素、纺锤菌素、4',6-二脒基-2-苯基吲哚和Hoechst 33342。一般来说,发现双链体和药物/双链体复合物所表现出的解离途径对初始电荷态非常敏感。对于较高电荷态,时间和激活电压无关的双链体链分离占主导,这被解释为内部库仑排斥或界面处部分解链的结果,而对于较低电荷态,时间和激活电压依赖性的共价裂解占主导。药物的身份和双链体的序列都被发现会影响不同解离过程之间的竞争。较低电荷态复合物的解离途径可能更能反映特定的药物 - DNA相互作用,因为这些前体的库仑和/或构象效应不太明显。