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tRNA1Val在核糖体P位点与16S RNA的共价交联:交联残基的鉴定。

Covalent crosslinking of tRNA1Val to 16S RNA at the ribosomal P site: identification of crosslinked residues.

作者信息

Prince J B, Taylor B H, Thurlow D L, Ofengand J, Zimmermann R A

出版信息

Proc Natl Acad Sci U S A. 1982 Sep;79(18):5450-4. doi: 10.1073/pnas.79.18.5450.

Abstract

N-Acetylvalyl-tRNA1Val (AcVal-tRNA1Val) was bound to the P site of uniformly 32P-labeled 70S ribosomes from Escherichia coli and crosslinked to 16S RNA in the 30S ribosomal subunit by irradiation with light of 300-400 nm. To identify the crosslinked nucleotide in 16S RNA. AcVal-tRNA1Val-16S [32P]RNA was digested completely with RNase T1 and the band containing the covalently attached oligonucleotides from tRNA and rRNA was isolated by polyacrylamide gel electrophoresis. The crosslinked oligonucleotide, and the 32P-labeled rRNA moiety released from it by photoreversal of the crosslink at 254 nm, were then analyzed by secondary hydrolysis with pancreatic RNase A and RNase U2. The oligonucleotide derived from 16S RNA was found to be the evolutionarily conserved sequence, U-A-C-A-C-A-C-C-G1401, and the nucleotide crosslinked to tRNA1Val, C1400. The identity of the covalently attached residue in the tRNA was established by using AcVal-tRNA1Val-16S RNA prepared from unlabeled ribosomes. This complex was digested to completion with RNase T1 and the resulting RNA fragments were labeled at the 3' end with [5'-32P]pCp. The crosslinked T1 oligonucleotide isolated from the mixture yielded one major end-labeled component upon photoreversal. Chemical sequence analysis demonstrated that this product was derived from the anticodon-containing pentadecanucleotide of tRNA1Val, C-A-C-C-U-C-C-C-U-cmo5U-A-C-m6A-A-G39(cmo5U, 5-carboxymethoxyuridine). A similar study of the crosslinked oligonucleotide revealed that the residue covalently bound to 16S was cmo5U34, the 5' or wobble base of the anticodon. The adduct is believed to result from formation of a cyclobutane dimer between cmo5U34 of tRNA1Val and C1400 of the 16S RNA.

摘要

N-乙酰缬氨酰-tRNA1Val(AcVal-tRNA1Val)与来自大肠杆菌的均匀32P标记的70S核糖体的P位点结合,并通过300-400nm光照射与30S核糖体亚基中的16S RNA交联。为了鉴定16S RNA中的交联核苷酸,将AcVal-tRNA1Val-16S [32P] RNA用RNase T1完全消化,并通过聚丙烯酰胺凝胶电泳分离含有来自tRNA和rRNA的共价连接的寡核苷酸的条带。然后通过用胰核糖核酸酶A和RNase U2进行二次水解来分析交联的寡核苷酸以及通过在254nm处交联的光逆转从其中释放的32P标记的rRNA部分。发现源自16S RNA的寡核苷酸是进化保守序列U-A-C-A-C-A-C-C-G1401,以及与tRNA1Val交联的核苷酸C1400。通过使用从未标记核糖体制备的AcVal-tRNA1Val-16S RNA确定了tRNA中共价连接残基的身份。用RNase T1将该复合物完全消化,并将所得RNA片段在3'末端用[5'-32P] pCp标记。从混合物中分离的交联T1寡核苷酸在光逆转后产生一种主要的末端标记成分。化学序列分析表明,该产物源自tRNA1Val的含反密码子的十五聚体核苷酸C-A-C-C-U-C-C-C-U-cmo5U-A-C-m6A-A-G39(cmo5U,5-羧基甲氧基尿苷)。对交联寡核苷酸的类似研究表明,与16S共价结合的残基是cmo5U34,即反密码子的5'或摆动碱基。据信该加合物是由tRNA1Val的cmo5U34与16S RNA的C1400之间形成环丁烷二聚体导致的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e08f/346921/1ad3980cba12/pnas00457-0029-a.jpg

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