Baker Erin Shammel, Bernstein Summer L, Bowers Michael T
Department of Chemistry and Biochemistry, University of California, Santa Barbara, California 93106-9510, USA.
J Am Soc Mass Spectrom. 2005 Jul;16(7):989-97. doi: 10.1016/j.jasms.2005.03.012.
The aggregation and conformation of deoxyguanosine (dG) in an ammonium acetate buffer solution were examined using mass spectrometry, ion mobility, and molecular mechanics/dynamics calculations. The nano-ESI mass spectrum indicated that 4 and 6 dGs cluster with 1 NH4+; 11 dGs with 2 NH4+; 14, 16, and 17 dGs with 3 NH4+; and 23 dGs with 4 NH4+. The collision cross sections with helium were measured and compared with calculated cross sections of theoretical structures generated by molecular mechanics/dynamics calculations. Three distinct arrival time distribution (ATD) peaks were observed for (4dG + NH4)+. One peak was assigned to the quadruplex structure of (4dG + NH4)+, while the other two peaks corresponded to the quadruplex structures of (8dG + 2NH4)2+ and (12dG + 3NH4)3+, all with the same m/z. Four ATD peaks were observed for (6dG + NH4)+ and assigned to the globular structure of (6dG + NH4)+, and the quadruplex structures of (12dG + 2NH4)2+, (18dG + 3NH4)3+, and (24dG + 4NH4)4+. Two ATD peaks were observed for (11dG + 2NH4)2+ and assigned to the quadruplex structures of (11dG + 2NH4)2+ and (22dG + 4NH4)4+. All of the other clusters in the mass spectrum (14, 16, and 17 dGs with 3 NH4+ and 23 dGs with 4 NH4+) only had one peak in their ATDs and in all cases the theoretical structures in a quadruplex arrangement agreed with the experimental cross sections. These results provide compelling evidence that quadruplexes are present in solution and retain their structure during the spray process, dehydration, and detection.
使用质谱、离子淌度和分子力学/动力学计算研究了脱氧鸟苷(dG)在醋酸铵缓冲溶液中的聚集和构象。纳米电喷雾电离质谱表明,4个和6个dG与1个NH₄⁺聚集;11个dG与2个NH₄⁺聚集;14个、16个和17个dG与3个NH₄⁺聚集;23个dG与4个NH₄⁺聚集。测量了与氦气的碰撞截面,并与分子力学/动力学计算生成的理论结构的计算截面进行了比较。对于(4dG + NH₄)⁺观察到三个不同的到达时间分布(ATD)峰。一个峰归属于(4dG + NH₄)⁺的四重结构,而另外两个峰对应于(8dG + 2NH₄)²⁺和(12dG + 3NH₄)³⁺的四重结构,所有这些结构具有相同的m/z。对于(6dG + NH₄)⁺观察到四个ATD峰,并归属于(6dG + NH₄)⁺的球状结构以及(12dG + 2NH₄)²⁺、(18dG + 3NH₄)³⁺和(24dG + 4NH₄)⁴⁺的四重结构。对于(11dG + 2NH₄)²⁺观察到两个ATD峰,并归属于(11dG + 2NH₄)²⁺和(22dG + 4NH₄)⁴⁺的四重结构。质谱中的所有其他簇(14个、16个和17个dG与3个NH₄⁺以及23个dG与4个NH₄⁺)在其ATD中只有一个峰,并且在所有情况下,四重排列的理论结构与实验截面一致。这些结果提供了令人信服的证据,表明四重结构存在于溶液中,并在喷雾过程、脱水和检测过程中保持其结构。