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大肠杆菌30S前核糖体RNA:初级和二级加工

30 S pre-ribosomal RNA of Escherichia coli:primary and secondary processing.

作者信息

Nikolaev N, Birenbaum M, Schlessinger D

出版信息

Biochim Biophys Acta. 1975 Jul 23;395(4):478-89. doi: 10.1016/0005-2787(75)90071-4.

Abstract

The metabolism of newly-formed labeled 30 S pre-ribosomal RNA was studied in the Escherichia coli mutant strain AB301-105. Detailed kinetic analysis in rifampicin-treated cells showed that precursors of 23 S and 16 S rRNA are formed from the 30 S RNA species, even in phosphate-limited cultures. To establish the order fo segments along 30 S pre-rRNA, it was allowed to accumulate in replicate chloramphenicol-treated cultures, and pulse-labeled after the addition of rifampicin in segments that progressively contained more 3'-distal label with time. The purified RNAs from the various cultures were then cleaved to a limited extent by RNAase III; the specific activity of the fragments yielded an order from the 5'-end of 17.5S-X-25S, where X refers to some of the sequences released as additional small fragments. More extensive treatment the 25-S and 17.5-S pre-rRNA chains with RNAase III yielded additional fragments and produced RNA species with the mobility of the 23-S and 16-S RNA precursors made in normal cells treated with chloramphenicol. A processing scheme is suggested that distinguishes between early, site-specific cleavage of recognition sites in the RNA itself ('primary processing'), and later, "secondary processing' reactions. The secondary processing reactions are blocked chloramphenicol-treated wild-type cells.

摘要

在大肠杆菌突变株AB301 - 105中研究了新合成的标记30S前核糖体RNA的代谢。对利福平处理的细胞进行的详细动力学分析表明,即使在磷酸盐限制培养条件下,23S和16S rRNA的前体也是由30S RNA物种形成的。为了确定沿着30S前体rRNA片段的顺序,让其在氯霉素处理的重复培养物中积累,并在添加利福平后进行脉冲标记,随着时间的推移,各片段逐渐含有更多3'端远端标记。然后用RNA酶III对来自各种培养物的纯化RNA进行有限程度的切割;片段的比活性产生了从5'端开始的顺序为17.5S - X - 25S,其中X指作为额外小片段释放的一些序列。用RNA酶III对25 - S和17.5 - S前体rRNA链进行更广泛的处理,产生了额外的片段,并产生了与氯霉素处理的正常细胞中产生的23 - S和16 - S RNA前体具有相同迁移率的RNA物种。提出了一种加工方案,该方案区分了RNA自身识别位点的早期、位点特异性切割(“初级加工”)和后期的“二级加工”反应。二级加工反应在氯霉素处理的野生型细胞中被阻断。

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