首页> 外文学位 >Syntheses of [8-carbon-13-1,7,amino radical-nitrogen(15,3)]-adenosine, -guanosine, and their deoxy analogs, their incorporation into DNA and RNA fragments, and nitrogen-15 NMR experiments .
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Syntheses of [8-carbon-13-1,7,amino radical-nitrogen(15,3)]-adenosine, -guanosine, and their deoxy analogs, their incorporation into DNA and RNA fragments, and nitrogen-15 NMR experiments .

机译:合成[8-碳-13-1,7,氨基-氮(15,3)]-腺苷,-鸟苷及其脱氧类似物,将其掺入DNA和RNA片段,并进行氮15 NMR实验。

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摘要

Oligonucleotides that contain specifically 15N multilabeled monomers can provide useful NMR information. To avoid ambiguity in signal identification when more than one multilabeled 15N monomer is present, a 13C atom can be introduced as a tag into one of a pair of 15N multilabeled nucleosides. [8-13 C-1,7,NH2-15N3]-Adenosine, -guanosine, and their deoxy analogs were synthesized to make use of the 8- 13C label as an indirect tag for the adjacent, biologically significant 15N7 labeled atoms. Although the very small C8-N7 coupling (1 Hz) precludes its direct detection in 1D 15N spectra, 2D 1H-15N NMR experiments display the large C8-H8 coupling (>200 Hz) because H8 is coupled to both N7 and C8. The 13C8 atom was introduced by means of a ring closure of two exocyclic amino groups on a pyrimidinone using [13C]-sodium ethyl xanthate. The resulting hypoxanthine was converted to the adenosine N1 oxide, from which all the multilabeled nucleosides were made. The final products were synthesized with overall yields ranging from 24% to 36%. Improvements were made in the protection and phosphitylation reactions necessary for incorporating them into oligonucleotides.; Using the phosphoramidite approach, eight DNA oligonucleotides were synthesized in quantities ranging from 11 to 26 mumol for investigations by collaborators. Four unlabeled DNA fragments were synthesized for spectroscopic, calorimetric, and other physical studies, and four different 15N, 13C multilabeled versions of a DNA G-quadruplex were synthesized to determine proton assignments required for its NMR structural determination.; Specifically 15N multilabeled RNA oligonucleotides were synthesized by the phosphoramidite approach in quantities ranging from 2.6 to 25 mumol for NMR studies of the two separate domains of the hairpin ribozyme. Using 15N NMR, the pKa of the N1 of G8 in the A loop motif was found to maintain a normal value greater than eight. 15N NMR was also used to probe for interactions of Co 3+ and Mg2+ with labeled nitrogens in specific adenosine and/or guanosine bases in both the A and B loops. As was previously reported, the loop A domain was found to have no metal binding sites. Due to the dynamic structure of loop B, a collection of different conformations was detected, none of which appear to have a tight metal binding site.
机译:包含15N多标记单体的寡核苷酸可以提供有用的NMR信息。当存在一个以上多标记的15N单体时,为避免信号识别中的歧义,可将13C原子作为标签引入一对15N多标记的核苷之一中。合成了[8-13 C-1,7,NH2-15N3]-腺苷,-鸟苷及其脱氧类似物,以利用8-13C标记作为相邻的,生物学上重要的15N7标记原子的间接标记。尽管非常小的C8-N7耦合(<1 Hz)阻止了它在1D 15N光谱中的直接检测,但是2D 1H-15N NMR实验显示出大的C8-H8耦合(> 200 Hz),因为H8与N7和C8耦合。使用[13C]-乙基黄原酸钠通过嘧啶酮上的两个环外氨基的闭环引入13C8原子。将得到的次黄嘌呤转化为腺苷N1氧化物,由此制得所有多标记的核苷。合成最终产物的总产率为24%至36%。改进了将它们掺入寡核苷酸中所需的保护和磷酸化反应。使用亚磷酰胺方法,合成了8个DNA寡核苷酸,数量从11到26摩尔不等,供合作者研究。合成了四个未标记的DNA片段,用于光谱学,量热法和其他物理研究,并且合成了四个不同的15N,13C多标记形式的DNA G四联体,以确定其NMR结构确定所需的质子分配。具体地,通过亚磷酰胺方法以2.6至25μmol的量合成了15N多标记的RNA寡核苷酸,用于发夹状核酶的两个独立结构域的NMR研究。使用15 N NMR,发现A环基序中G8的N1的pKa保持正常值大于8。 15N NMR还用于探测Co 3+和Mg2 +与A和B环中特定腺苷和/或鸟苷碱基中标记的氮的相互作用。如先前报道的,发现环A结构域没有金属结合位点。由于环B的动态结构,检测到了不同构象的集合,这些构象似乎都没有紧密的金属结合位点。

著录项

  • 作者

    Shallop, Anthony John.;

  • 作者单位

    Rutgers The State University of New Jersey - New Brunswick.;

  • 授予单位 Rutgers The State University of New Jersey - New Brunswick.;
  • 学科 Chemistry Biochemistry.; Chemistry Organic.
  • 学位 Ph.D.
  • 年度 2003
  • 页码 173 p.
  • 总页数 173
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;有机化学;
  • 关键词

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