Xing Y, Draper D E
Department of Chemistry, Johns Hopkins University, Baltimore, MD 21218, USA.
J Mol Biol. 1995 Jun 2;249(2):319-31. doi: 10.1006/jmbi.1995.0299.
Interactions between ribosomal protein L11 and a domain of large subunit rRNA have been highly conserved and are essential for efficient protein synthesis. To study the effects of L11 on rRNA folding, a homolog of the Escherichia coli L11 gene has been amplified from Bacillus stearothermophilus DNA and cloned into a phage T7 polymerase-based expression system. The expressed protein is 93% homologous to the L11 homolog from Bacillus subtilis, denatures at temperatures above 72 degrees C, and has nearly identical rRNA binding properties as the Escherichia coli L11 in terms of RNA affinity constants and their dependences on temperature, Mg2+ concentration, monovalent cation, and RNA mutations. Mg2+ and NH4+ are specifically bound by the RNA-protein complex, with apparent ion-RNA affinities of 1.6 mM-1 and 19 M-1, respectively, at 0 degree C. The effect of the thermostable L11 on the unfolding of a 60 nucleotide rRNA fragment containing its binding domain has been examined in melting experiments. The lowest temperature RNA transition, which is attributed to tertiary structure unfolding, is stabilized by approximately 25 degrees C, and the interaction has an intrinsic enthalpy of approximately 13 kcal/mol. The thermal stability of the protein-RNA complex is enhanced by increasing Mg2+ concentration and by NH4+ relative to Na+. Thus L11, NH4+, and Mg2+ all bind and stabilize the same rRNA tertiary interactions, which are conserved and presumably important for ribosome function.
核糖体蛋白L11与核糖体大亚基rRNA的一个结构域之间的相互作用高度保守,对高效蛋白质合成至关重要。为了研究L11对rRNA折叠的影响,已从嗜热脂肪芽孢杆菌DNA中扩增出大肠杆菌L11基因的同源物,并将其克隆到基于噬菌体T7聚合酶的表达系统中。所表达的蛋白与枯草芽孢杆菌的L11同源物有93%的同源性,在高于72℃的温度下变性,并且就RNA亲和常数及其对温度、Mg2+浓度、单价阳离子和RNA突变的依赖性而言,具有与大肠杆菌L11几乎相同的rRNA结合特性。Mg2+和NH4+被RNA-蛋白质复合物特异性结合,在0℃时,表观离子-RNA亲和力分别为1.6 mM-1和19 M-1。在解链实验中研究了热稳定的L11对包含其结合结构域的60个核苷酸rRNA片段解折叠的影响。归因于三级结构解折叠的最低温度RNA转变被稳定了约25℃,并且该相互作用的固有焓约为13 kcal/mol。相对于Na+,增加Mg2+浓度和加入NH4+可增强蛋白质-RNA复合物的热稳定性。因此,L11、NH4+和Mg2+都结合并稳定相同的rRNA三级相互作用,这些相互作用是保守的,可能对核糖体功能很重要。