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X-ray crystallography of large RNAs: heavy-atom derivatives by RNA engineering.

机译:大型RNA的X射线晶体学:RNA工程学的重原子衍生物。

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摘要

For small RNAs, isomorphous heavy-atom derivatives can be obtained by crystallizing synthetic versions that incorporate modified nucleotides such as iodo- or bromouridine. However, such a synthetic approach is not yet feasible for RNAs greater than approximately 40 nt. We have been investigating P4-P6, a 160-nt domain of the self-splicing Tetrahymena intron whose structure was solved recently (Cate JH et al., 1996, Science 273:1678-1685). To incorporate iodouridine, a two-piece RNA was constructed. The 5' segment, containing the majority of the molecule, was transcribed in vitro using a self-processing hammerhead ribozyme to cleave the nascent transcript and give a homogenous 3' end. A synthetic 5-iodouridine-containing RNA corresponding to the remainder of the sequence was then annealed to the transcribed piece of RNA. The resulting RNA appeared structurally and functionally sound as judged by nondenaturing gel electrophoresis and RNA cleavage assays. Four versions of this two-piece system with 5-iodouridine substitutions at different positions crystallized under the same conditions as the native RNA, yielding two useful heavy-atom derivatives of P4-P6. The position of the iodine atoms for the derivatives could be determined in the absence of phase information, and an interpretable electron density map was calculated using only the data from the two iodouridine derivatives. This approach is expected to be readily adaptable to other large, structured RNA molecules.
机译:对于小RNA,可以通过结晶并入修饰核苷酸(如碘或溴尿苷)的合成形式获得同晶型重原子衍生物。但是,这种合成方法对于大于约40 nt的RNA尚不可行。我们一直在研究P4-P6,这是自剪接四膜虫内含子的160 nt结构域,其结构最近已被解决(Cate JH等人,1996,Science 273:1678-1685)。为了掺入碘尿苷,构建了两件式RNA。使用自我加工的锤头状核酶在体外转录包含大部分分子的5'片段,以裂解新生的转录本并提供均一的3'末端。然后将对应于序列其余部分的合成的含5-碘尿苷的RNA退火至转录的RNA。通过非变性凝胶电泳和RNA裂解分析判断,所得的RNA在结构和功能上均表现良好。在与天然RNA相同的条件下,此两件式系统在不同位置具有5-碘尿苷取代的四个版本结晶,从而产生了两个有用的P4-P6重原子衍生物。可以在不存在相信息的情况下确定衍生物中碘原子的位置,并且仅使用来自两个碘碘衍生物的数据来计算可解释的电子密度图。预期该方法将易于适应其他大的结构化RNA分子。

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