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A small ribozyme with dual-site kinase activity

机译:具有双位点激酶活性的小核酶

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Phosphoryl transfer onto backbone hydroxyls is a recognized catalytic activity of nucleic acids. We find that kinase ribozyme K28 possesses an unusually complex active site that promotes (thio)phosphorylation of two residues widely separated in primary sequence. After allowing the ribozyme to radiolabel itself by phosphoryl transfer from [γ-32P]GTP, DNAzyme-mediated cleavage yielded two radiolabeled cleavage fragments, indicating phosphorylation sites within each of the two cleavage fragments. These sites were mapped by alkaline digestion and primer extension pausing. Enzymatic digestion and mutational analysis identified nucleotides important for activity and established the active structure as being a constrained pseudoknot with unusual connectivity that may juxtapose the two reactive sites. Nuclease sensitivities for nucleotides near the pseudoknot core were altered in the presence of GTPγS, indicating donor-induced folding. The 5′ target site was more strongly favored in full-length ribozyme K28 (128nt) than in truncated RNAs (58nt). Electrophoretic mobilities of self-thiophosphorylated products on organomercurial gels are distinct from the 5′ mono-thiophosphorylated product produced by reaction with polynucleotide kinase, potentially indicating simultaneous labeling of both sites within individual RNA strands. Our evidence supports a single, compact structure with local dynamics, rather than global rearrangement, as being responsible for dual-site phosphorylation.
机译:磷酸转移到主链羟基上是核酸的公认催化活性。我们发现,激酶核酶K28具有一个异常复杂的活性位点,该活性位点可促进两个在一级序列中广泛分离的残基的(硫代)磷酸化。在通过从[γ-32P] GTP进行磷酰基转移使核酶进行放射性标记后,DNAzyme介导的裂解产生了两个放射性标记的裂解片段,表明两个裂解片段中每个的磷酸化位点。这些位点通过碱性消化和引物延伸暂停进行定位。酶消化和突变分析确定了对活性重要的核苷酸,并将活性结构确定为具有异常连接性的受约束假结,其可能使两个反应位点并置。在存在GTPγS的情况下,假结核心附近核苷酸的核酸酶敏感性发生了变化,表明供体诱导的折叠。全长核酶K28(128nt)比截短RNA(58nt)更倾向于5'靶位点。自硫代磷酸化产物在有机汞凝胶上的电泳迁移率不同于通过与多核苷酸激酶反应产生的5'单硫代磷酸化产物,这可能表明单个RNA链中两个位点同时被标记。我们的证据支持具有局部动力学而不是全局重排的单一紧凑结构,因为其负责双位点磷酸化。

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