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转移核糖核酸及相关化合物的研究。XL。对应于大肠杆菌甲硫氨酸起始转运核糖核酸(tRNAfMet)35 - 54位残基的二十碳核糖核苷酸的合成。

Studies on transfer ribonucleic acids and related compounds. XL. Synthesis of an eicosaribonucleotide corresponding to residues 35-54 of tRNAfMet from E. coli.

作者信息

Ohtsuka E, Fujiyama K, Ikehara M

出版信息

Nucleic Acids Res. 1981 Jul 24;9(14):3503-22. doi: 10.1093/nar/9.14.3503.

Abstract

An E. coli tRNAfMet fragment [C-A-U-A-A-C-C-C-G-A-A-G-G-U-C-G-U-C-G-G (bases 35-f54)] containing the anticodon triplet has been synthesized by the phosphotriester method involving protected oligonucleotide blocks. Di- or tri-nucleotide blocks were prepared by condensation of 2'-O-(o-nitrobenzyl) nucleotide derivatives and used for the synthesis of pentanucleotide blocks. The 5'-hydroxy, heterocyclic amino and internucleotide linkage were protected with monomethoxytrityl, acyl and p-chlorophenyl groups, respectively. The 3'-phosphates of the pentanucleotides, except for the GUCGG block where 2'-O-benzoyl 3'-O-(o-nitrobenzyl) N-isobutyrylguanosine was used, were protected with p-chlorophenyl and anilido groups. The anilido groups were removed by treatment with isoamyl nitrite and the 3'-phosphodiesters of resulting pentamers were activated with mesitylenesulfonyl nitrotriazolide to give protected decanucleotides in yields of 61-89%. The two decanucleotides were condensed similarly to yield the protected eicosanucleotide in a yield of 59%. The product was deblocked and purified by ion-exchange chromatography on DEAE-Sephadex A-25 and characterized by enzymatic hydrolysis after labelling the 5'-end by phosphorylation using polynucleotide kinase and [gamma-32P]ATP.

摘要

一段包含反密码子三联体的大肠杆菌甲硫氨酸起始tRNA片段[C-A-U-A-A-C-C-C-G-A-A-G-G-U-C-G-U-C-G-G(碱基35至54)]已通过涉及保护寡核苷酸片段的磷酸三酯法合成。二核苷酸或三核苷酸片段通过2'-O-(邻硝基苄基)核苷酸衍生物的缩合制备,并用于合成五核苷酸片段。5'-羟基、杂环氨基和核苷酸间连接分别用单甲氧基三苯甲基、酰基和对氯苯基保护。除了使用2'-O-苯甲酰基-3'-O-(邻硝基苄基)-N-异丁酰鸟苷的GUCGG片段外,五核苷酸的3'-磷酸用对氯苯基和苯胺基保护。通过用异戊基亚硝酸盐处理除去苯胺基,并用均三甲苯磺酰基硝基三唑激活所得五聚体的3'-磷酸二酯,得到产率为61-89%的保护十核苷酸。两个十核苷酸以类似方式缩合,得到产率为59%的保护二十核苷酸。产物脱保护并通过在DEAE-葡聚糖A-25上的离子交换色谱法纯化,并在使用多核苷酸激酶和[γ-32P]ATP通过磷酸化标记5'-末端后通过酶促水解进行表征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2837/327367/9249b025a16f/nar00407-0291-a.jpg

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