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Secondary structure of two regions in expansion segments ES3 and ES6 with the potential of forming a tertiary interaction in eukaryotic 40S ribosomal subunits

机译:扩展区段ES3和ES6中两个区域的二级结构可能在真核40S核糖体亚基中形成三级相互作用

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摘要

The 18S rRNA of the small eukaryotic ribosomal subunit contains several expansion segments. Electron microscopy data indicate that two of the largest expansion segments are juxtaposed in intact 40S subunits, and data from phylogenetic sequence comparisons indicate that these two expansion segments contain complementary sequences that could form a direct tertiary interaction on the ribosome. We have investigated the secondary structure of the two expansion segments in the region around the putative tertiary interaction. Ribosomes from yeast, wheat, and mouse—three organisms representing separate eukaryotic kingdoms—were isolated, and the structure of ES3 and part of the ES6 region were analyzed using the single-strand-specific chemical reagents CMCT and DMS and the double-strand-specific ribonuclease V1. The modification patterns were analyzed by primer extension and gel electrophoresis on an ABI 377 automated DNA sequencer. The investigated sequences were relatively exposed to chemical and enzymatic modification. This is in line with their indicated location on the surface at the solvent side of the subunit. The complementary ES3 and ES6 sequences were clearly inaccessible to single-strand modification, but available for cleavage by double-strand-specific RNase V1. The results are compatible with a direct helical interaction between bases in ES3 and ES6. Almost identical results were obtained with ribosomes from the three organisms investigated.
机译:小的真核生物核糖体亚基的18S rRNA包含几个扩展段。电子显微镜数据表明,最大的两个扩展节段并列在完整的40S亚基中,系统发育序列比较的数据表明,这两个扩展节段包含互补序列,可以在核糖体上形成直接的三级相互作用。我们研究了假定的三次相互作用周围区域中两个扩展段的二级结构。分离了来自酵母,小麦和小鼠的核糖体(代表不同的真核生物的三种生物),并使用单链特异性化学试剂CMCT和DMS以及双链寡核苷酸分析了ES3和ES6部分区域的结构。特定的核糖核酸酶V1。通过引物延伸和ABI 377自动DNA测序仪上的凝胶电泳分析修饰模式。研究的序列相对暴露于化学和酶促修饰。这与它们在亚基的溶剂侧的表面上指示的位置一致。互补的ES3和ES6序列显然无法进行单链修饰,但可用于双链特异性RNase V1的切割。结果与ES3和ES6中碱基之间的直接螺旋相互作用兼容。用三种研究的生物体的核糖体获得了几乎相同的结果。

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