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Using immobilized enzymes to reduce RNase contamination in RNase mapping of transfer RNAs by mass spectrometry

机译:在质谱分析转移RNA的RNase作图中使用固定化酶减少RNase污染

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摘要

RNase (ribonuclease) mapping by nucleobase-specific endonucleases combined with mass spectrometry (MS) is a powerful analytical method for characterizing ribonucleic acids such as transfer RNAs. Typical free solution enzymatic digestion of RNA samples results in a significant amount of RNase being present in the sample solution analyzed by MS. In some cases, the RNase can lead to contamination of the high performance liquid chromatography and MS instrumentation. Here we investigate and compare several different approaches for reducing or eliminating contaminating RNase from the digested RNA sample before LC-MS analysis. Approaches using immobilized RNases were found to be most effective, with no enzyme carryover into the digested sample detected. Among the various options for immobilized RNases, we show that carbodiimide-based reactions can be used to couple RNases to carboxylic acid-terminated magnetic beads. The immobilized enzymes retain biological activity, are re-usable, and do not interfere with subsequent LC-MS analysis of the expected RNase digestion products. The use of immobilized RNases provides a simple approach for eliminating enzyme contamination in mass spectrometry-based RNase mapping experiments.
机译:通过核碱基特异性核酸内切酶与质谱(MS)结合进行RNase(核糖核酸酶)作图是表征核糖核酸(例如转移RNA)的强大分析方法。 RNA样品的典型游离溶液酶促消化导致大量的RNase存在于通过MS分析的样品溶液中。在某些情况下,RNase可能导致高效液相色谱和MS仪器污染。在这里,我们调查和比较几种减少或消除LC-MS分析之前从消化的RNA样品中污染RNA酶的方法。发现使用固定化RNase的方法是最有效的方法,没有酶残留到消化的样品中。在固定的RNase的各种选择中,我们表明基于碳二亚胺的反应可用于将RNase偶联至羧酸封端的磁珠。固定的酶保留生物学活性,可重复使用,并且不会干扰随后的预期RNase消化产物的LC-MS分析。固定化RNase的使用为在基于质谱的RNase定位实验中消除酶污染提供了一种简单的方法。

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