首页> 美国卫生研究院文献>Nucleic Acids Research >Substrate masking: binding of RNA by EGTA-inactivated micrococcal nuclease results in artifactual inhibition of RNA processing reactions.
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Substrate masking: binding of RNA by EGTA-inactivated micrococcal nuclease results in artifactual inhibition of RNA processing reactions.

机译:底物掩盖:EGTA灭活的微球菌核酸酶与RNA结合会导致人为抑制RNA加工反应。

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摘要

Inhibition of an RNA processing reaction after treatment with the Ca2(+)-dependent micrococcal nuclease (MN) is often used as a criterion for the presence of a required RNA or ribonucleoprotein component in the system. Following MN digestion, the nuclease is inactivated with EGTA and radiolabeled substrate is added to assay for remaining RNA processing activity. We found previously that inhibition of RNA processing by MN need not involve RNA hydrolysis: EGTA-inactivated MN can suppress RNA processing if the assay is performed in the absence of carrier RNA. We now demonstrate both by native gel electrophoresis and by nitrocellulose filter retention that EGTA-inactivated MN forms a complex with free RNA which can be dissociated by addition of synthetic polynucleotides or heparin. In the absence of Ca2+, nuclease binds to precursor tRNA with an apparent KD congruent to 1.4 x 10(-6) M, comparable to its reported affinity for DNA. In an assay for endonucleolytic tRNA maturation, inactivated MN bound to radiolabeled pre-tRNA physically blocks the sites of endonuclease cleavage and prevents tRNA processing. We call this phenomenon 'substrate masking'. Addition of excess carrier RNA competes with pre-tRNA for MN binding and restores normal processing.
机译:用Ca2(+)依赖性微球菌核酸酶(MN)处理后,抑制RNA加工反应通常被用作系统中所需RNA或核糖核蛋白组分存在的标准。 MN消化后,用EGTA灭活核酸酶,并添加放射性标记的底物以测定剩余的RNA加工活性。先前我们发现,MN抑制RNA加工不必涉及RNA水解:如果在没有载体RNA的情况下进行测定,EGTA灭活的MN可以抑制RNA加工。现在我们通过天然凝胶电泳和硝化纤维滤膜保留证明,EGTA灭活的MN与游离RNA形成复合物,可以通过添加合成的多核苷酸或肝素来解离。在不存在Ca2 +的情况下,核酸酶以与1.4 x 10(-6)M一致的表观KD与前体tRNA结合,这与其报道的对DNA的亲和力相当。在用于内切核酸酶tRNA成熟的测定中,与放射性标记的pre-tRNA结合的灭活MN在物理上阻断了内切核酸酶裂解的位点并阻止了tRNA的加工。我们称这种现象为“基板掩膜”。添加过量的载体RNA与前tRNA竞争MN结合并恢复正常加工。

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