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对大肠杆菌核糖核酸酶P RNA与转运RNA相互作用至关重要的嘌呤N7基团。

Purine N7 groups that are crucial to the interaction of Escherichia coli rnase P RNA with tRNA.

作者信息

Heide C, Feltens R, Hartmann R K

机构信息

Medizinische Universität zu Lübeck, Institut für Biochemie, Germany.

出版信息

RNA. 2001 Jul;7(7):958-68. doi: 10.1017/s1355838201001753.

Abstract

We have detected by nucleotide analog interference mapping (NAIM) purine N7 functional groups in Escherichia coli RNase P RNA that are important for tRNA binding under moderate salt conditions (0.1 M Mg2+, 0.1 M NH4+). The majority of identified positions represent highly or universally conserved nucleotides. Our assay system allowed us, for the first time, to identify c7-deaza interference effects at two G residues (G292, G306). Several c7-deazaadenine interference effects (A62, A65, A136, A249, A334, A351) have also been identified in other studies performed at very different salt concentrations, either selecting for substrate binding in the presence of 0.025 M Ca2+ and 1 M NH4+ or self-cleavage of a ptRNA-RNase P RNA conjugate in the presence of 3 M NH4+ or Na+. This indicates that these N7 functional groups play a key role in the structural organization of ribozyme-substrate and -product complexes. We further observed that a c7-deaza modification at A76 of tRNA interferes with tRNA binding to and ptRNA processing by E. coli RNase P RNA. This finding combined with the strong c7-deaza interference at G292 of RNase P RNA supports a model in which substrate and product binding to E. coli RNase P RNA involves the formation of intermolecular base triples (A258-G292-C75 and G291-G259-A76).

摘要

我们通过核苷酸类似物干扰图谱法(NAIM)在大肠杆菌核糖核酸酶P RNA中检测到嘌呤N7功能基团,这些基团在中等盐浓度条件下(0.1 M Mg2+,0.1 M NH4+)对tRNA结合很重要。大多数已鉴定的位置代表高度保守或普遍保守的核苷酸。我们的检测系统首次使我们能够鉴定出两个G残基(G292、G306)处的c7-脱氮干扰效应。在其他研究中,在非常不同的盐浓度下进行实验时,也鉴定出了几种c7-脱氮腺嘌呤干扰效应(A62、A65、A136、A249、A334、A351),这些实验要么是在0.025 M Ca2+和1 M NH4+存在下选择底物结合,要么是在3 M NH4+或Na+存在下选择ptRNA-核糖核酸酶P RNA共轭物的自我切割。这表明这些N7功能基团在核酶-底物和-产物复合物的结构组织中起关键作用。我们进一步观察到,tRNA的A76处的c7-脱氮修饰会干扰tRNA与大肠杆菌核糖核酸酶P RNA的结合以及ptRNA的加工。这一发现与核糖核酸酶P RNA的G292处强烈的c7-脱氮干扰相结合,支持了一种模型,即底物和产物与大肠杆菌核糖核酸酶P RNA的结合涉及分子间碱基三联体(A258-G292-C75和G291-G259-A76)的形成。

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