首页> 外文会议>Micro-NanoMechatronics and Human Science, 2009. MHS 2009 >Enzymatic and crystallographic characterization of archaeal tRNA splicing endonuclease
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Enzymatic and crystallographic characterization of archaeal tRNA splicing endonuclease

机译:古细菌tRNA剪接核酸内切酶的酶学和晶体学表征

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RNA splicing endonuclease, which is conserved in Eukarya and Archaea, removes introns from eukaryotic nuclear tRNA and archaeal all RNA species. There are three types of subunit composition in archaeal RNA splicing endonucleases, namely ¿2 (homodimer in some Euryarchaea), ¿4 (homotetramer in other Euryarchaea) and (¿ß)2 (heterotetramer in the Crenarchaea) types. In Crenarchaea, introns in precursor tRNA (pre-tRNA) molecules are found not only in anticodon arm but also in several other regions in tRNA such as D- and T-loops, variable region, and aminoacyl stem. These introns have a consensus bulge-helix-bulge motif. Crenarchaeal RNA splicing endonuclease can remove introns in such non-canonical sites. However, the broad cleavage site-specificity of the enzyme remains exclusive. Here, we report the cleavage activity of recombinant RNA splicing endonuclease from hyperthermophilic crenarcheon Aeropyrum pernix (APE) by using the pre-tRNAThr (UGU) and pre-tRNAThr (CGU), in which introns are located in anticodon and D-loops, respectively. Furthermore we report that APE RNA splicing enzyme crystallizes in space group P3(1) with two or three heterotetramers in an asymmetric unit. An X-ray diffraction data set has been collected to 2.8 A¿ resolution. Structural determination is now underway.
机译:在Eukarya和Archaea中保守的RNA剪接核酸内切酶可从真核核tRNA中除去内含子,并古细菌所有RNA种类。在古细菌RNA剪接核酸内切酶中,亚基组成有三种类型,分别是Â 2 (某些Euryarchaea中的同二聚体),ÂÂ 4 (其他Euryarchaea中的同四聚体)和(Â ¿) 2 (Crenarchaea中的异四聚体)类型。在Crenarchaea中,不仅在反密码子臂中发现前体tRNA(pre-tRNA)分子中的内含子,而且还在tRNA的其他几个区域(例如D环和T环,可变区和氨酰基茎)中发现内含子。这些内含子具有共有的凸起-螺旋-凸起基序。颅骨RNA剪接核酸内切酶可以去除此类非规范位点中的内含子。但是,该酶的广泛切割位点特异性仍然是排他的。在这里,我们报道了通过使用pre-tRNA Thr(UGU)和pre-tRNA Thr(CGU)从嗜热性球囊嗜热气单胞菌(APE)重组RNA剪接核酸内切酶的切割活性,其中内含子分别位于反密码子和D环中。此外,我们报告说,APE RNA剪接酶在不对称单元中具有两个或三个异四聚体的空间群P3(1)中结晶。 X射线衍射数据集已被收集到2.8 A的分辨率。目前正在进行结构确定。

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