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Formation of an active site in trans by interaction of two complete Varkud Satellite ribozymes.

机译:通过两个完整的Varkud卫星核酶的相互作用,反式形成一个活性位点。

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摘要

The complete VS ribozyme comprises seven helical segments, connected by three three-way RNA junctions. In the presence of Mg(2+) ions, cleavage occurs within the internal loop of helix I. This requires the participation of a guanine (G638) within the helix I loop, and a remote adenine (A756) within an internal loop of helix VI. Previous structural studies have suggested that helix I docks into the fold of the remaining part of the ribozyme, bringing A756 and G638 close to the scissile phosphate to allow the cleavage reaction to proceed. We show here that while either A756C or G638A individually exhibit very low cleavage activity, a mixture of the two variants leads to cleavage of the A756C RNA, but not the G638A RNA. The rate of cleavage depends on the concentration of the VS G638A RNA, as expected for a bimolecular interaction. This regaining of cleavage activity by complementation indicates that helix I of one VS RNA can interact with another VS RNA molecule to generate a functional active site in trans.
机译:完整的VS核酶包含七个螺旋节段,由三个三向RNA接头连接。在存在Mg(2+)离子的情况下,在螺旋I的内部环内发生裂解。这需要在螺旋I环内的鸟嘌呤(G638)和在螺旋的内部环内的远程腺嘌呤(A756)参与。 VI。先前的结构研究表明,螺旋I停靠在核酶其余部分的折叠中,使A756和G638靠近易裂磷酸盐,从而使裂解反应得以进行。我们在这里显示,尽管A756C或G638A各自显示出非常低的切割活性,但两种变体的混合物却导致了A756C RNA的切割,而不是G638A RNA的切割。如双分子相互作用所预期的,切割速率取决于VS G638A RNA的浓度。通过互补恢复切割活性表明一个VS RNA的螺旋I可以与另一个VS RNA分子相互作用以产生反式的功能性活性位点。

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