Akashi Satoko, Osawa Ryo, Nishimura Yoshifumi
Graduate School of Integrated Science, Yokohama City University, Yokohama, Japan.
J Am Soc Mass Spectrom. 2005 Jan;16(1):116-25. doi: 10.1016/j.jasms.2004.09.021.
Binding affinity of complexes between a DNA-binding domain (DBD) of a transcription factor, c-Myb, and several double-stranded DNA (dsDNA) were evaluated by collision-induced dissociation (CID) of the multiply protonated molecules generated by electrospray ionization mass spectrometry (ESI-MS). Complexes of the c-Myb DBD and dsDNA were prepared in solution and analyzed by ESI-MS. Multiply protonated molecules of a high-affinity complex, the c-Myb DBD and dsDNA with a specific sequence, were clearly observed in ESI mass spectrum. Protonated molecules of the complex were quite stable in the gas-phase, and not easily dissociated even if high cone voltage was applied in the first vacuum chamber source when the sample was prepared in 10 mM ammonium acetate. As for the sample prepared in buffer with higher concentration of ammonium acetate, such as 500 mM ammonium acetate, protein-dsDNA complexes could easily be dissociated with an increase in the cone voltage, giving multiply protonated molecules of free c-Myb DBD and some DNA fragments. Systematic CID experiments were carried out on seven complexes between the c-Myb DBD and 22-mer dsDNA with different solution-Kd values in the range of 10(-9) M to 10(-7) M. For each complex dissociation curve as a function of cone voltage was plotted, and the cone voltage where 50% of the complex was dissociated (V(50%)) was calculated. Consequently, positive correlation was obtained between V(50%) and relative binding free energy change (DeltaDeltaG) in complex formation in solution. This suggests that ESI-CID experiments can provide quantitative evaluation of the stability of protein-DNA complexes based on proper calibration.
通过电喷雾电离质谱(ESI-MS)产生的多质子化分子的碰撞诱导解离(CID),评估转录因子c-Myb的DNA结合结构域(DBD)与几种双链DNA(dsDNA)之间复合物的结合亲和力。在溶液中制备c-Myb DBD与dsDNA的复合物,并通过ESI-MS进行分析。在ESI质谱中清晰观察到高亲和力复合物(即具有特定序列的c-Myb DBD和dsDNA)的多质子化分子。该复合物的质子化分子在气相中相当稳定,即使在以10 mM醋酸铵制备样品时,在第一真空室源中施加高锥电压也不易解离。对于在更高醋酸铵浓度的缓冲液(如500 mM醋酸铵)中制备的样品,随着锥电压的增加,蛋白质-dsDNA复合物很容易解离,产生游离c-Myb DBD的多质子化分子和一些DNA片段。对c-Myb DBD与溶液Kd值在10^(-9) M至10^(-7) M范围内的不同22聚体dsDNA之间的七种复合物进行了系统的CID实验。针对每种复合物,绘制了作为锥电压函数的解离曲线,并计算了复合物解离50%时的锥电压(V(50%))。因此,在溶液中复合物形成过程中,V(50%)与相对结合自由能变化(ΔΔG)之间获得了正相关。这表明基于适当校准,ESI-CID实验可以对蛋白质-DNA复合物的稳定性进行定量评估。