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The poly(A) site sequence in HDV RNA alters both extent and rate of self-cleavage of the antigenomic ribozyme

机译:HDV RNA中的poly(A)位点序列改变了反基因组核酶的自身裂解程度和速率

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摘要

The ribozyme self-cleavage site in the antigenomic sequence of hepatitis delta virus (HDV) RNA is 33-nt downstream of the poly(A) site for the delta antigen mRNA. An HDV antigenomic ribozyme precursor RNA that included the upstream poly(A) processing site was used to test the hypothesis that nonribozyme sequence near the poly(A) site could affect ribozyme activity. Relative to ribozyme precursor without the extra upstream sequences, the kinetic profile for self-cleavage of the longer precursor was altered in two ways. First, only half of the precursor RNA self-cleaved. The cleaved fraction could be increased or decreased with mutations in the upstream sequence. These mutations, which were predicted to alter the relative stability of competing secondary structures within the precursor, changed the distribution of alternative RNA structures that are resolved in native-gel electrophoresis. Second, the active fraction cleaved with an observed rate constant that was higher than that of the ribozyme without the upstream sequences. Moreover, the higher rate constants occurred at lower, near-physiological, divalent metal ion concentrations (1–2 mM). Modulation of ribozyme activity, through competing alternative structures, could be part of a mechanism that allows a biologically significant choice between maturation of the mRNA and processing of replication intermediates.
机译:肝炎三角洲病毒(HDV)RNA的反基因组序列中的核酶自我切割位点在δ抗原mRNA的poly(A)位点下游33 nt。包含上游poly(A)加工位点的HDV抗原组核酶前体RNA被用于检验以下假说:poly(A)位点附近的非核酶序列可能会影响核酶活性。相对于没有额外上游序列的核酶前体,较长前体自身裂解的动力学特征以两种方式改变。首先,只有一半的前体RNA自我切割。切割的部分可以随着上游序列中的突变而增加或减少。预计这些突变会改变前体中竞争性二级结构的相对稳定性,从而改变了在天然凝胶电泳中解析的替代RNA结构的分布。第二,活性部分以观察到的速率常数裂解,该速率常数高于没有上游序列的核酶的速率常数。此外,较高的速率常数出现在较低的,接近生理的二价金属离子浓度(1-2 mM)下。通过竞争性替代结构调节核酶活性,可能是一种机制的一部分,该机制允许在mRNA成熟和复制中间体加工之间进行生物学上的重大选择。

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