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Crystal structure of the RNA component of bacterial ribonuclease P

机译:细菌核糖核酸酶P RNA成分的晶体结构

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摘要

Transfer RNA ( tRNA) is produced as a precursor molecule that needs to be processed at its 30 and 50 ends. Ribonuclease P is the sole endonuclease responsible for processing the 50 end of tRNA by cleaving the precursor and leading to tRNA maturation. It was one of the first catalytic RNA molecules identified(1) and consists of a single RNA component in all organisms and only one protein component in bacteria. It is a true multi- turnover ribozyme and one of only two ribozymes ( the other being the ribosome) that are conserved in all kingdoms of life. Here we show the crystal structure at 3.85 angstrom resolution of the RNA component of Thermotoga maritima ribonuclease P. The entire RNA catalytic component is revealed, as well as the arrangement of the two structural domains. The structure shows the general architecture of the RNA molecule, the inter- and intra- domain interactions, the location of the universally conserved regions, the regions involved in pre- tRNA recognition and the location of the active site. A model with bound tRNA is in agreement with all existing data and suggests the general basis for RNA - RNA recognition by this ribozyme.
机译:转移RNA(tRNA)作为前体分子产生,需要在其30和50端进行处理。核糖核酸酶P是唯一的核酸内切酶,负责通过切割前体并导致tRNA成熟来处理tRNA的50末端。它是最早鉴定出的催化RNA分子之一(1),由所有生物中的单个RNA成分和细菌中的仅一个蛋白质成分组成。这是一个真正的多周转核酶,并且是所有生命王国中保守的仅有的两个核酶之一(另一个是核糖体)。在这里,我们显示了嗜热袍菌核糖核酸酶P的RNA组分在3.85埃分辨率下的晶体结构。揭示了整个RNA催化组分,以及两个结构域的排列。该结构显示了RNA分子的一般结构,域间和域内相互作用,通用保守区的位置,pre-tRNA识别所涉及的区域以及活性位点的位置。结合了tRNA的模型与所有现有数据相符,并提出了RNA的一般基础-该核酶识别RNA。

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