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Comparison of the base pairing properties of a series of nitroazole nucleobase analogs in the oligodeoxyribonucleotide sequence 5'-d(CGCXAATTYGCG)-3'.

机译:寡脱氧核糖核苷酸序列5'-d(CGCXAATTYGCG)-3'中一系列硝基唑核苷碱基类似物的碱基配对特性的比较。

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摘要

The nucleoside analogs 1-(2'-deoxy-beta-D-ribofuranosyl)- 3-nitropyrrole (9), 1-(2'-deoxy-beta-D-ribofuranosyl)-4-nitropyrazole (10), 1-(2'-deoxy-beta-D-ribofuranosyl)-4-nitroimidazole (11) and 1-(2'-deoxy-beta-D-ribofuranosyl)-5-nitroindole (21) were incorporated into the oligonucleotide 5'-d(CGCXAATTYGCG)-3'in the fourth position from the 5'-end. Procedures for synthesis of two of the nitroazole nucleosides, 10 and 11, were developed for this study. Each of the nitroazoles was converted into a 3'-phosphoramidite for oligonucleotide synthesis by conventional automated protocols. Four oligonucleotides were synthesized for each modified nucleoside in order to obtain duplexes in which each of the four natural bases was placed opposite (position 9) the nitroazole. In order to assess the role of the nitro group on base stacking interaction, sequences were also synthesized in which the fourth base was 1-(2'-deoxy-beta-D-ribofuranosyl)pyrazole. Corresponding sequences containing an abasic site, as well as sequences containing inosine, were synthesized for comparison. Thermal melting studies yielded T m values and thermodynamic parameters. Each nucleoside analog displayed a unique pattern of base pairing preferences. The least discriminating analog was 3-nitropyrrole, for which T m values differed by 5 degrees C and Delta G 25 degrees C ranged from -6.1 to -6.5 kcal/mol. 5-Nitroindole gave duplexes with significantly higher thermal stability, with Tm values varying from 35.0 to 46.5 degrees C and -Delta G 25 degrees C ranging from 7.7 to 8.5 kcal/mol. Deoxyinosine (22), a natural analog which has found extensive use as a universal nucleoside, is far less non-discriminating than any of the nitroazole derivatives. Tm values ranged from 35.4 degrees C when paired with G to 62.3 degrees C when paired with C. The significance of the nitro substituent was determined by comparison of the base pairing properties of a simple azole nucleoside, 1-(2'-deoxy-beta-D-ribofuranosyl)pyrazole (12). The pyrazole-containing sequences melt at 10-20 degrees C lower than the corresponding nitropyrazole-containing sequences. On average, the pyrazole-containing sequences were equivalent in stability (average Delta G = -4.8 kcal/mol) to the sequences containing an abasic site (average Delta G = -4.7 kcal/mol).
机译:核苷类似物1-(2'-脱氧-β-D-呋喃核糖基)-3-硝基吡咯(9),1-(2'-脱氧-β-D-核呋喃糖基)-4-硝基吡唑(10),1-(将2'-脱氧-β-D-呋喃核糖基)-4-硝基咪唑(11)和1-(2'-脱氧-β-D-核呋喃糖基)-5-硝基吲哚(21)掺入寡核苷酸5'-d( CGCXAATTYGCG)-3'从5'末端移至第四位置。为这项研究开发了合成两个硝基唑核苷10和11的程序。通过常规的自动化方案将每种硝基唑转化为3'-亚磷酰胺以用于寡核苷酸合成。为每个修饰的核苷合成了四个寡核苷酸,以获得双链体,其中四个天然碱基的每一个与硝基唑相对(位置9)放置。为了评估硝基在碱基堆积相互作用中的作用,还合成了其中第四个碱基为1-(2'-脱氧-β-D-核呋喃呋喃糖基)吡唑的序列。合成了包含无碱基位点的相应序列以及包含肌苷的序列以进行比较。热熔研究得出了T m值和热力学参数。每个核苷类似物显示出独特的碱基配对偏好模式。区别最小的类似物是3-硝基吡咯,其T m值相差5°C,ΔG 25°C的范围为-6.1至-6.5 kcal / mol。 5-硝基吲哚使双链体具有明显更高的热稳定性,Tm值在35.0至46.5摄氏度之间变化,-ΔG 25摄氏度在7.7至8.5 kcal / mol之间变化。脱氧肌苷(22)是一种已被广泛用作通用核苷的天然类似物,它比任何硝基唑衍生物都具有更好的非歧视性。 Tm值范围从与G配对时的35.4摄氏度到与C配对时的62.3摄氏度。通过比较简单的吡咯核苷1-(2'-deoxy-beta)的碱基配对特性来确定硝基取代基的重要性-D-呋喃核糖基)吡唑(12)。含吡唑的序列在比相应的含硝基吡唑的序列低10-20℃下熔融。平均而言,含吡唑的序列在稳定性(平均ΔG= -4.8kcal / mol)上等同于含有无碱基位点的序列(平均ΔG= -4.7kcal / mol)。

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