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The heteromeric Nanoarchaeum equitans splicing endonuclease cleaves noncanonical bulge–helix–bulge motifs of joined tRNA halves

机译:异源Nanoarchaeum equitans剪接核酸内切酶可裂解连接的tRNA一半的非经典凸起-螺旋-凸起基序

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摘要

Among the tRNA population of the archaeal parasite Nanoarchaeum equitans are five species assembled from separate 5′ and 3′ tRNA halves and four species derived from tRNA precursors containing introns. In both groups an intervening sequence element must be removed during tRNA maturation. A bulge–helix–bulge (BHB) motif is the hallmark structure required by the archaeal splicing endonuclease for recognition and excision of all introns. BHB motifs are recognizable at the joining sites of all five noncontinuous tRNA species, although deviations from the canonical BHB motif are clearly present in at least two of them. Here, we show that the N. equitans splicing endonuclease cleaves tRNA precursors containing normal introns, as well as all five noncontinuous precursor tRNAs, at the predicted splice sites, indicating the enzyme's dual role in the removal of tRNA introns and processing of tRNA halves to be joined in trans. The cleavage activity on a set of synthetic canonical and noncanonical BHB constructs showed that the N. equitans splicing endonuclease accepts a broader range of substrates than the homodimeric Archaeoglobus fulgidus enzyme. In contrast to the A. fulgidus endonuclease, the N. equitans splicing enzyme possesses two different subunits. This heteromeric endonuclease type, found in N. equitans, in all Crenarchaeota, and in Methanopyrus kandleri, is able to act on the noncanonical tRNA introns present only in these organisms, which suggests coevolution of enzyme and substrate.
机译:在古细菌寄生纳米马的tRNA种群中,有五个物种是由分开的5'和3'半个tRNA组装而成的,另外四个物种是来自包含内含子的tRNA前体。在这两个组中,必须在tRNA成熟期间除去中间序列元素。凸起-螺旋-凸起(BHB)基序是古细菌剪接核酸内切酶识别和切除所有内含子所需的标志性结构。在所有五个非连续tRNA物种的连接位点都可以识别BHB基序,尽管在其中至少两个中显然存在与标准BHB基序的偏离。在这里,我们显示了N. equitans拼接核酸内切酶在预期的剪接位点切割了包含正常内含子的tRNA前体以及所有五个非连续前体tRNA,表明该酶在去除tRNA内含子和将tRNA减半加工为反式加入。对一组合成的规范和非规范BHB构建体的切割活性表明,与同型二聚古球菌fulgidus酶相比,N。equitans剪接核酸内切酶接受的底物范围更广。与A. fulgidus内切核酸酶相反,N。equitans拼接酶具有两个不同的亚基。这种异聚核酸内切酶类型存在于马尾猪笼草,所有Crenarchaeota和Methanopyrus kandleri中,能够作用于仅存在于这些生物中的非规范tRNA内含子,这提示酶和底物共同进化。

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