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核糖体RNA的金属离子探测:进化上保守的二价阳离子结合口袋的证据

Metal ion probing of rRNAs: evidence for evolutionarily conserved divalent cation binding pockets.

作者信息

Polacek N, Barta A

机构信息

Institute of Biochemistry, University of Vienna, Vienna Biocenter, Austria.

出版信息

RNA. 1998 Oct;4(10):1282-94. doi: 10.1017/s1355838298980347.

Abstract

Ribosomes are multifunctional RNP complexes whose catalytic activities absolutely depend on divalent metal ions. It is assumed that structurally and functionally important metal ions are coordinated to highly ordered RNA structures that form metal ion binding pockets. One potent tool to identify the structural surroundings of high-affinity metal ion binding pockets is metal ion-induced cleavage of RNA. Exposure of ribosomes to divalent metal ions, such as Pb2+, Mg2+, Mn2+, and Ca2+, resulted in site-specific cleavage of rRNAs. Sites of strand scission catalyzed by different cations accumulate at distinct positions, indicating the existence of general metal ion binding centers in the highly folded rRNAs in close proximity to the cleavage sites. Two of the most efficient cleavage sites are located in the 5' domain of both 23S and 16S rRNA, regions that are known to self-fold even in the absence of ribosomal proteins. Some of the efficient cleavage sites were mapped to the peptidyl transferase center located in the large ribosomal subunit. Furthermore, one of these cleavages was clearly diminished upon AcPhe-tRNA binding to the P site, but was not affected by uncharged tRNA. This provides evidence for a close physical proximity of a metal ion to the amino acid moiety of charged tRNAs. Interestingly, comparison of the metal ion cleavage pattern of eubacterial 70S with that of human 80S ribosomes showed that certain cleavage sites are evolutionarily highly conserved, thus demonstrating an identical location of a nearby metal ion. This suggests that cations, bound to evolutionarily constrained binding sites, are reasonable candidates for being of structural or functional importance.

摘要

核糖体是多功能核糖核蛋白复合体,其催化活性绝对依赖于二价金属离子。据推测,结构和功能上重要的金属离子与形成金属离子结合口袋的高度有序的RNA结构配位。识别高亲和力金属离子结合口袋结构环境的一个有效工具是金属离子诱导的RNA切割。核糖体暴露于二价金属离子,如Pb2+、Mg2+、Mn2+和Ca2+,会导致rRNA的位点特异性切割。由不同阳离子催化的链断裂位点聚集在不同位置,表明在高度折叠的rRNA中靠近切割位点处存在一般金属离子结合中心。两个最有效的切割位点位于23S和16S rRNA的5'结构域,即使在没有核糖体蛋白的情况下,这些区域也已知会自我折叠。一些有效的切割位点被定位到位于大核糖体亚基中的肽基转移酶中心。此外,当AcPhe - tRNA结合到P位点时,其中一种切割明显减少,但不受无电荷tRNA的影响。这为金属离子与带电tRNA的氨基酸部分紧密物理接近提供了证据。有趣的是,比较真细菌70S与人类80S核糖体的金属离子切割模式表明,某些切割位点在进化上高度保守,从而证明附近金属离子的位置相同。这表明,与进化上受限的结合位点结合的阳离子很可能在结构或功能上具有重要意义。

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