首页> 外文期刊>Journal of Molecular Biology >Satellite cereal yellow dwarf virus-RPV (satRPV) RNA requires a douXble hammerhead for self-cleavage and an alternative structure for replication.
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Satellite cereal yellow dwarf virus-RPV (satRPV) RNA requires a douXble hammerhead for self-cleavage and an alternative structure for replication.

机译:卫星谷物黄矮病毒-RPV(satRPV)RNA需要双倍锤头才能自我切割,并且需要一种替代结构来复制。

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The 110 nt hammerhead ribozyme in the satellite RNA of cereal yellow dwarf virus-RPV (satRPV RNA) folds into an alternative conformation that inhibits self-cleavage. This alternative structure comprises a pseudoknot with base-pairing between loop (L1) and a single-stranded bulge (L2a), which are located in hammerhead stems I and II, respectively. Mutations that disrupt this base-pairing, or otherwise cause the ribozyme to more closely resemble a canonical hammerhead, greatly increase self-cleavage. In a more natural multimeric sequence context containing the full-length satRPV RNA and two copies of the hammerhead, wild-type RNA cleaves much more efficiently than in the 110 nt context. Mutations in the upstream hammerhead, including a knock-out in the catalytic core, affect cleavage at the downstream cleavage site, indicating that multimers of satRPV RNA cleave via a double hammerhead. The double hammerhead includes base-pairing between two copies of the L1 sequence which extends stem I. Disruption of L1-L1 base-pairing slows cleavage of the multimer. L1-L2a base-pairing is required for efficient replication of satRPV RNA in oat protoplasts. Mutations that affect self-cleavage of the multimer do not correlate with replication efficiency, indicating that the ability to self-cleave is not a primary determinant of replication. We present a replication model in which multimeric satRPV RNA folds into alternative conformations that cannot form in the monomer. One potential metastable intermediate conformation involves L1-L2a base-pairing that may facilitate formation of the double hammerhead. However, we conclude that L1-L2a also performs some other essential function in the satRPV RNA replication cycle, because the L1-L2a base-pairing is more important than efficient self-cleavage for replication. Copyright 1999 Academic Press.
机译:谷类黄矮病毒-RPV(satRPV RNA)的卫星RNA中的110 nt锤头状核酶折叠成另一种抑制自我切割的构象。这种替代结构包括一个假结,该假结在环(L1)和单链凸起(L2a)之间具有碱基配对,它们分别位于锤头杆I和II中。破坏这种碱基配对的突变,或导致核酶更接近规范锤头的突变,大大增加了自我切割。在包含全长satRPV RNA和锤头的两个拷贝的更自然的多聚序列环境中,野生型RNA的裂解比110 nt环境中的裂解效率高得多。上游锤头中的突变,包括催化核心的敲除,影响下游裂解位点的裂解,表明satRPV RNA的多聚体通过双锤头裂解。双锤头在延伸茎I的L1序列的两个拷贝之间包括碱基配对。L1-L1碱基配对的破坏减慢了多聚体的切割。 L1-L2a碱基配对是燕麦原生质体中有效复制satRPV RNA所必需的。影响多聚体自我切割的突变与复制效率不相关,表明自我切割的能力不是复制的主要决定因素。我们提出了一种复制模型,其中多聚体satRPV RNA折叠成无法在单体中形成的替代构象。一种潜在的亚稳中间构象涉及L1-L2a碱基配对,可促进双锤头的形成。但是,我们得出的结论是,L1-L2a在satRPV RNA复制周期中还执行其他一些基本功能,因为L1-L2a碱基配对比有效的自我切割更为重要。版权所有1999,学术出版社。

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