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2'-O-甲基-3'-硫代鸟苷作为一种用于探索I组内含子催化作用的探针的合成及其生化应用

Synthesis and biochemical application of 2'-O-methyl-3'-thioguanosine as a probe to explore group I intron catalysis.

作者信息

Lu Jun, Li Nan-Sheng, Sengupta Raghuvir N, Piccirilli Joseph A

机构信息

Howard Hughes Medical Institute, Department of Biochemistry & Molecular Biology, The University of Chicago, 929 East 57th Street, Chicago, IL 60637, USA.

出版信息

Bioorg Med Chem. 2008 May 15;16(10):5754-60. doi: 10.1016/j.bmc.2008.03.061. Epub 2008 Mar 27.

Abstract

Oligonucleotides containing 3'-S-phosphorothiolate linkages provide valuable analogues for exploring the catalytic mechanisms of enzymes and ribozymes, both to identify catalytic metal ions and to probe hydrogen-bonding interactions. Here, we have synthesized 2'-O-methyl-3'-thioguanosine to test a possible hydrogen-bonding interaction in the Tetrahymena ribozyme reaction. We developed an efficient method for the synthesis of 2'-O-methyl-3'-thioguanosine phosphoramidite in eight steps starting from 2'-O-methyl-N(2)-(isobutyryl) guanosine with 10.4% overall yield. Following incorporation into oligonucleotides using solid-phase synthesis, we used this new analogue to investigate whether the 3'-oxygen of the guanosine cofactor in the Tetrahymena ribozyme reaction serves as an acceptor for the hydrogen bond donated by the adjacent 2'-hydroxyl group. We show that regardless of whether the guanosine cofactor bears a 3'-oxygen or 3'-sulfur leaving group, replacing the adjacent 2'-hydroxyl group with a 2'-methoxy group incurs the same energetic penalty, providing evidence against an interaction. These results indicate that the hydrogen bond donated by the guanosine 2'-hydroxyl group contributes to catalytic function in a manner distinct from the U(-1) 2'-hydroxyl group.

摘要

含有3'-硫代磷酸酯键的寡核苷酸为探索酶和核酶的催化机制提供了有价值的类似物,既可以识别催化金属离子,又可以探测氢键相互作用。在此,我们合成了2'-O-甲基-3'-硫代鸟苷,以测试四膜虫核酶反应中可能存在的氢键相互作用。我们开发了一种从2'-O-甲基-N(2)-(异丁酰基)鸟苷开始,经过八步反应合成2'-O-甲基-3'-硫代鸟苷亚磷酰胺的有效方法,总产率为10.4%。在使用固相合成法将其掺入寡核苷酸后,我们用这种新的类似物来研究四膜虫核酶反应中鸟苷辅因子的3'-氧是否作为相邻2'-羟基提供的氢键的受体。我们表明,无论鸟苷辅因子带有3'-氧还是3'-硫离去基团,用2'-甲氧基取代相邻的2'-羟基都会产生相同的能量损失,这为不存在相互作用提供了证据。这些结果表明,鸟苷2'-羟基提供的氢键以一种不同于U(-1) 2'-羟基的方式对催化功能有贡献。

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