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首页> 外文期刊>The Journal of biological chemistry >How a CCA Sequence Protects Mature tRNAs and tRNA Precursors from Action of the Processing Enzyme RNase BN/RNase Z
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How a CCA Sequence Protects Mature tRNAs and tRNA Precursors from Action of the Processing Enzyme RNase BN/RNase Z

机译:CCA序列如何保护成熟的TrNAS和TRNA前体免受加工酶RNase BN / RNase Z的作用的作用

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In many organisms, 3′ maturation of tRNAs is catalyzed by the endoribonuclease, RNase BN/RNase Z, which cleaves after the discriminator nucleotide to generate a substrate for addition of the universal CCA sequence. However, tRNAs or tRNA precursors that already contain a CCA sequence are not cleaved, thereby avoiding a futile cycle of removal and readdition of these essential residues. We show here that the adjacent C residues of the CCA sequence and an Arg residue within a highly conserved sequence motif in the channel leading to the RNase catalytic site are both required for the protective effect of the CCA sequence. When both of these determinants are present, CCA-containing RNAs in the channel are unable to move into the catalytic site; however, substitution of either of the C residues by A or U or mutation of Arg274 to Ala allows RNA movement and catalysis to proceed. These data define a novel mechanism for how tRNAs are protected against the promiscuous action of a processing enzyme.
机译:在许多生物中,3'TrNA成熟的TrNA催化通过内衣核酸酶,RNase BN / RNase Z,其在鉴别器核苷酸之后切割以产生用于添加通用CCA序列的基材。然而,已经含有CCA序列的TRNA或TRNA前体不会被切割,从而避免了这些基本残留物的去除和Readdition的徒劳的循环。在此显示CCA序列的相邻C残基和在通道中高度保守的序列基序内的通道中的高度保守的序列基序在通道中的通道中均为CCA序列的保护作用。当存在两种这些决定因素时,通道中的含CCA的RNA不能进入催化部位;然而,将A或U或arg274至Ala的突变取代任何C残基允许RNA运动和催化继续进行。这些数据定义了一种新的机制,用于如何保护TRNA如何免受加工酶的混杂作用。

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