Chemical and Analytical Sciences Division, Oak Ridge National Laboratory, P.O. Bow 2008, 37831-6365, Oak Ridge, TN.
J Am Soc Mass Spectrom. 1994 Aug;5(8):740-7. doi: 10.1016/1044-0305(94)80006-5.
Two isomeric oligodeoxynucleotide hexamers, 5'-d(N-6meATGCAT)-3' and 5'-d(ATGSmeCAT)-3', were subjected to analysis by electrospray and ion trap mass spectrometry. In the case of the isomer with a modified adenine, location of the modified base in the sequence was straightforward and a triple mass spectrometry experiment provided information on the identity of the modification. In contrast, the isomer with the methylated cytosine did not yield definitive information on the location or identity of the modification. Tandem mass spectrometry data in this case could indicate that the modification was present on either the third or fourth nucleoside. The two isomers represent extremes in the facility with which modified bases can be identified and located in a small oligonucleotide via multiple mass spectrometry of multiply charged anions. A preference for loss of particular bases strongly influences which structurally diagnostic ions are formed upon collisional activation. The likelihood for locating and identifying a modified base is dependent, therefore, upon the likelihood that the base is lost directly from the parention.
两个异构的寡脱氧核苷酸六聚体,5'-d(N-6meATGCAT)-3'和 5'-d(ATGSmeCAT)-3',通过电喷雾和离子阱质谱进行了分析。对于带有修饰腺嘌呤的异构体,修饰碱基在序列中的位置是直接的,三重质谱实验提供了关于修饰的身份信息。相比之下,带有甲基化胞嘧啶的异构体并没有提供关于修饰位置或身份的明确信息。在这种情况下,串联质谱数据可以表明修饰存在于第三个或第四个核苷上。这两种异构体代表了通过多电荷阴离子的多级质谱法在小寡核苷酸中识别和定位修饰碱基的难易程度的极端情况。对特定碱基丢失的偏好强烈影响碰撞激活时形成的结构诊断离子。因此,定位和识别修饰碱基的可能性取决于该碱基是否直接从母体中丢失的可能性。