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B77禽肉瘤病毒RNA亚基内部甲基化的序列特异性

Sequence specificity of internal methylation in B77 avian sarcoma virus RNA subunits.

作者信息

Dimock K, Stoltzfus C M

出版信息

Biochemistry. 1977 Feb 8;16(3):471-8. doi: 10.1021/bi00622a021.

Abstract

Following ribonuclease digestion of methyl-3H-labeled B77 avian sarcoma virus RNA subunits, methylated oligonucleotides were isolated by diethylaminoethylcellulose chromotogrpahy. Partial nucleotide sequences were deduced from the known enzymatic specificities of the ribonucleases. In addition to methylated nucleosides in the 5'-terminal cap structure, m7G(5')GmpCp, N6-methyladenosine(m6A) was found to be present in only two internal sequences of the RNA molecule, Gpm6ApC and Apm6ApC. The average numbers of methylated nucleosides per RNA subunit are about 12-13 in Gpm6ApC, 1-2 in Apm6ApC, and 2 in m7GpppGmpCp. The sequences containing m6A in B77 sarcoma virus RNA are identical to m6A-containing sequences previously reported for the bulk mRNA from HeLa cells (Wei, C.M., Gershowitz, A., and Moss, B. (1976), Biochemistry 15, 397-401). Analysis of the oligonucleotides produced by RNase A digestion indicated that the sequence of bases on the 5' side of these trinucleotides is not specific. The oligonucleotide profile, however, was highly reproducible in different virus preparations. This suggests that the methylations occur at specific positions on the RNA molecule. Some of the methylated oligonucleotides produced by RNase A digestion appear to be present in less than molar amounts. Several hypotheses are proposed to explain this result.

摘要

用核糖核酸酶消化甲基 - ³H标记的B77禽肉瘤病毒RNA亚基后,通过二乙氨基乙基纤维素色谱法分离甲基化寡核苷酸。根据核糖核酸酶已知的酶切特异性推导部分核苷酸序列。除了5'-末端帽结构中的甲基化核苷m⁷G(5')GmpCp外,还发现N⁶-甲基腺苷(m⁶A)仅存在于RNA分子的两个内部序列Gpm⁶ApC和Apm⁶ApC中。每个RNA亚基中甲基化核苷的平均数在Gpm⁶ApC中约为12 - 13个,在Apm⁶ApC中为1 - 2个,在m⁷GpppGmpCp中为2个。B77肉瘤病毒RNA中含m⁶A的序列与先前报道的来自HeLa细胞的大量mRNA中含m⁶A的序列相同(Wei, C.M., Gershowitz, A., and Moss, B. (1976), Biochemistry 15, 397 - 401)。对核糖核酸酶A消化产生的寡核苷酸分析表明,这些三核苷酸5'侧的碱基序列不具有特异性。然而,寡核苷酸图谱在不同病毒制剂中具有高度可重复性。这表明甲基化发生在RNA分子的特定位置。核糖核酸酶A消化产生的一些甲基化寡核苷酸似乎以低于摩尔量存在。提出了几种假设来解释这一结果。

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