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Hfq stimulates the activity of the CCA-adding enzyme

机译:Hfq刺激添加CCA的酶的活性

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Background The bacterial Sm-like protein Hfq is known as an important regulator involved in many reactions of RNA metabolism. A prominent function of Hfq is the stimulation of RNA polyadenylation catalyzed by E. coli poly(A) polymerase I (PAP). As a member of the nucleotidyltransferase superfamily, this enzyme shares a high sequence similarity with an other representative of this family, the tRNA nucleotidyltransferase that synthesizes the 3'-terminal sequence C-C-A to all tRNAs (CCA-adding enzyme). Therefore, it was assumed that Hfq might not only influence the poly(A) polymerase in its specific activity, but also other, similar enzymes like the CCA-adding enzyme. Results Based on the close evolutionary relation of these two nucleotidyltransferases, it was tested whether Hfq is a specific modulator acting exclusively on PAP or whether it also influences the activity of the CCA-adding enzyme. The obtained data indicate that the reaction catalyzed by this enzyme is substantially accelerated in the presence of Hfq. Furthermore, Hfq binds specifically to tRNA transcripts, which seems to be the prerequisite for the observed effect on CCA-addition. Conclusion The increase of the CCA-addition in the presence of Hfq suggests that this protein acts as a stimulating factor not only for PAP, but also for the CCA-adding enzyme. In both cases, Hfq interacts with RNA substrates, while a direct binding to the corresponding enzymes was not demonstrated up to now (although experimental data indicate a possible interaction of PAP and Hfq). So far, the basic principle of these stimulatory effects is not clear yet. In case of the CCA-adding enzyme, however, the presented data indicate that the complex between Hfq and tRNA substrate might enhance the product release from the enzyme.
机译:背景技术细菌Sm样蛋白Hfq被认为是参与RNA代谢许多反应的重要调节剂。 Hfq的主要功能是刺激大肠杆菌多聚(A)聚合酶I(PAP)催化的RNA聚腺苷酸化。作为核苷酸转移酶超家族的成员,该酶与该家族的另一个代表具有高度的序列相似性,它是将tRNA核苷酸转移酶合成所有tRNA的3'端序列C-C-A(添加CCA的酶)。因此,假设Hfq可能不仅会影响poly(A)聚合酶的比活性,而且还会影响其他类似的酶,例如CCA加成酶。结果基于这两个核苷酸转移酶的紧密进化关系,测试了Hfq是否是专门作用于PAP的特异性调节剂,或者它是否也影响添加CCA的酶的活性。所获得的数据表明,在Hfq的存在下,由该酶催化的反应被大大加速。此外,Hfq与tRNA转录物特异性结合,这似乎是观察到的对CCA加成作用的前提。结论在Hfq存在下CCA添加量的增加表明该蛋白不仅对PAP刺激,而且对CCA添加酶也起刺激作用。在这两种情况下,Hfq都与RNA底物相互作用,而到目前为止尚未证明与相应酶的直接结合(尽管实验数据表明PAP和Hfq可能存在相互作用)。到目前为止,这些刺激作用的基本原理尚不清楚。但是,在添加CCA的酶的情况下,提供的数据表明Hfq和tRNA底物之间的复合物可能会增强酶的产物释放。

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