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Mode of Action of RNase BN/RNase Z on tRNA Precursors: RNase BN DOES NOT REMOVE THE CCA SEQUENCE FROM tRNA*

机译:RNase BN / RNase Z在tRNA前体上的作用方式:RNase BN不会从tRNA中去除CCA序列*

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摘要

RNase BN, the Escherichia coli homolog of RNase Z, was previously shown to act as both a distributive exoribonuclease and an endoribonuclease on model RNA substrates and to be inhibited by the presence of a 3′-terminal CCA sequence. Here, we examined the mode of action of RNase BN on bacteriophage and bacterial tRNA precursors, particularly in light of a recent report suggesting that RNase BN removes CCA sequences (Takaku, H., and Nashimoto, M. (2008) Genes Cells 13, 1087–1097). We show that purified RNase BN can process both CCA-less and CCA-containing tRNA precursors. On CCA-less precursors, RNase BN cleaved endonucleolytically after the discriminator nucleotide to allow subsequent CCA addition. On CCA-containing precursors, RNase BN acted as either an exoribonuclease or endoribonuclease depending on the nature of the added divalent cation. Addition of Co2+ resulted in higher activity and predominantly exoribonucleolytic activity, whereas in the presence of Mg2+, RNase BN was primarily an endoribonuclease. In no case was any evidence obtained for removal of the CCA sequence. Certain tRNA precursors were extremely poor substrates under any conditions tested. These findings provide important information on the ability of RNase BN to process tRNA precursors and help explain the known physiological properties of this enzyme. In addition, they call into question the removal of CCA sequences by RNase BN.
机译:RNase BN,即RNase Z的大肠杆菌同源物,先前已显示出在模型RNA底物上既是分布性外切核糖核酸酶又是内切核糖核酸酶,并被3'-末端CCA序列抑制。在这里,我们研究了RNase BN对噬菌体和细菌tRNA前体的作用方式,特别是根据最近的报告表明RNase BN去除了CCA序列(Takaku,H.和Nashimoto,M.(2008)基因细胞13, 1087–1097)。我们显示纯化的RNase BN可以处理无CCA和含CCA的tRNA前体。在不含CCA的前体上,RNase BN在鉴别核苷酸后进行内切核酸酶切割,以允许随后的CCA添加。在含有CCA的前体上,取决于添加的二价阳离子的性质,RNA酶BN可以作为核糖核酸外切酶或核糖核酸内切酶。 Co 2 +的添加导致更高的活性和主要的核糖核酸外切活性,而在Mg2 +的存在下,RNase BN主要是核糖核酸内切酶。在任何情况下都没有获得去除CCA序列的任何证据。在任何测试条件下,某些tRNA前体都是极差的底物。这些发现提供了有关RNase BN处理tRNA前体的能力的重要信息,并有助于解释该酶的已知生理特性。此外,他们对RNase BN去除CCA序列提出了质疑。

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