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Interaction of mRNA with the Escherichia coli ribosome: accessibility of phosphorothioate-containing mRNA bound to ribosomes for iodine cleavage.

机译:mRNA与大肠杆菌核糖体的相互作用:与核糖体结合的含硫代磷酸酯的mRNA用于碘裂解的可及性。

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摘要

The contacts of phosphate groups in mRNAs with ribosomes were studied. Two mRNAs were used: one mRNA contained in the middle two defined codons to construct the pre- and the post-translocational states, the other was a sequence around the initiation site of the natural cro-mRNA. Phosphorothioate nucleotides were randomly incorporated at a few A, G, U or C positions during in vitro transcription. Iodine can cleave the thioated positions if they are not shielded by ribosomal components. Only a few minor differences in iodine cleavage of ribosome bound and non-bound mRNA were observed: the nucleotide two positions upstream of the decoding codons (i.e. those codons involved in codon-anticodon interactions) showed a reduced accessibility for iodine and the nucleotide immediately following the decoding codons an enhanced accessibility in both elongating states. In initiating ribosomes where the mRNA contained a strong Shine-Dalgarno sequence, at least five phosphates were additionally slightly protected covering the Shine-Dalgarno sequence and nucleotides downstream including the initiator AUG in the P site (Al, G3, G-2, G-5 and A-7). The low contact levels of the phosphates in the mRNA with the elongating ribosome strikingly contrast with the pronounced contact patterns previously described for tRNAs. The data obtained in this study, as well as results of previous studies, suggest that mRNA regions downstream and upstream of decoding codons form only weak contacts with ribosomal components and that the mRNA thus is mainly fixed by codon-anticodon interaction on the elongating ribosome.
机译:研究了mRNA中磷酸基团与核糖体的接触。使用了两种mRNA:一种位于中间两个定义的密码子中的mRNA,以构建易位前和易位后状态,另一种是天然cro-mRNA起始位点周围的序列。在体外转录过程中,硫代磷酸核苷酸随机地掺入了几个A,G,U或C位置。如果没有被核糖体成分屏蔽,碘可以裂解硫代化的位置。观察到的核糖体结合和未结合的mRNA的碘裂解的微小差异:解码密码子上游两个核苷酸的核苷酸(即那些参与密码子-反密码子相互作用的密码子)显示出碘的可及性降低,紧随其后的核苷酸解码密码子在两个伸长状态下都具有增强的可访问性。在mRNA包含强Shine-Dalgarno序列的起始核糖体中,至少有五种磷酸盐被略微保护,覆盖了Shine-Dalgarno序列和下游核苷酸,包括P位点的起始子AUG(A1,G3,G-2,G- 5和A-7)。 mRNA与延长的核糖体的低接触水平与先前针对tRNA的显着接触模式形成鲜明对比。在这项研究中获得的数据以及先前的研究结果表明,解码密码子下游和上游的mRNA区域仅与核糖体成分形成弱接触,因此该mRNA主要通过密码子-反密码子相互作用固定在延伸的核糖体上。

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