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通过热解-电子轰击-碰撞活化质谱法鉴定完整转移核糖核酸中的修饰核苷。

Identification of modified nucleosides in intact transfer ribonucleic acid by pyrolysis-electron impact-collisional activation mass spectrometry.

作者信息

Puzo G, Wiebers J L

出版信息

Nucleic Acids Res. 1981 Sep 25;9(18):4655-67. doi: 10.1093/nar/9.18.4655.

Abstract

A novel mass spectrometric method has been developed for the detection and identification of dihydrouridine, ribothymidine, 4-thiouridine, and 7-methylguanosine in Escherichia coli tRNAs. The method utilizes (a) Pyrolysis-Electron Impact-Mass Spectrometry (PYEIMS), a procedure which releases the purine and pyrimidine bases from the intact, underivatized tRNA molecule. The mass spectrum exhibits intense peaks for the bases deriving from the common nucleosides in tRNA as well as peaks of much lower intensity at mass values expected for the bases from modified components known to be present in the tRNA; and, (b) Collisional Activation Mass Spectrometry (CAMS), a technique which permits the isolation of a single ion species from a complex mass spectrum. Subsequent fragmentation of that species yields a characteristic collisional activation spectrum. Such analyses of the ion species that were presumed to originate from H2Urd, rThd, 4SUrd, and 7MeGuo in the tRNA were used to define the structure and, thus, the identity of each component. Attributes of the PYEICAMS technique are that (a) precise structural elucidation of minor nucleosides present in tRNAs at the 1 - 4% level is obtained; (b) the high order of sensitivity allows the analysis to be done on microgram amounts of tRNA; and (c) there is no requirement for enzymatic or chemical hydrolysis of the tRNA or for subsequent chromatographic separation methods.

摘要

已开发出一种新型质谱方法,用于检测和鉴定大肠杆菌转运RNA中的二氢尿苷、核糖胸苷、4-硫尿苷和7-甲基鸟苷。该方法利用:(a) 热解-电子轰击-质谱法(PYEIMS),此方法可从完整的、未衍生化的转运RNA分子中释放嘌呤和嘧啶碱基。质谱图显示出源自转运RNA中常见核苷的碱基的强峰,以及在已知存在于转运RNA中的修饰成分的碱基预期质量值处强度低得多的峰;以及,(b) 碰撞活化质谱法(CAMS),该技术可从复杂质谱图中分离出单一离子种类。该离子种类随后的碎片化产生特征性的碰撞活化谱。对转运RNA中假定源自二氢尿苷、核糖胸苷、4-硫尿苷和7-甲基鸟苷的离子种类进行此类分析,用于确定每个成分的结构,进而确定其身份。PYEICAMS技术的特点是:(a) 可对转运RNA中含量为1%-4%的次要核苷进行精确的结构解析;(b) 高灵敏度使得能够对微克量的转运RNA进行分析;以及(c) 无需对转运RNA进行酶解或化学水解,也无需后续的色谱分离方法。

相似文献

10
Patterns of base modification in tRNA.转运RNA中的碱基修饰模式。
Nat New Biol. 1973 Jul 4;244(131):18-20. doi: 10.1038/newbio244018a0.

引用本文的文献

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Collision-induced dissociation of uracil and its derivatives.尿嘧啶及其衍生物的碰撞诱导解离。
J Am Soc Mass Spectrom. 1994 May;5(5):339-49. doi: 10.1016/1044-0305(94)85049-6.

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