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Minimizing O-18/O-16 back-exchange in the relative quantification of ribonucleic acids

机译:最小化核糖核酸相对定量中的O-18 / O-16反向交换

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摘要

The use of isotopically labeled endonuclease digestion products allows for the relative quantification of ribonucleic acids (RNAs). This approach utilizes ribonucleases such as RNase T1 to mediate the incorporation of O-18 onto the 3'-terminus of the endonuclease digestion product from a solution containing heavy water ((H2O)-O-18). The accuracy and precision of relative quantification are dependent on the efficiency of isotope incorporation and minimizing any possible O-18 to O-16 back-exchange before or during mass spectral analysis. Here, we have investigated the stability of O-18-labeled endonuclease digestion products to back-exchange. In particular, the effects of pH, temperature and presence of RNase on the back-exchange process were examined using matrix-assisted laser desorption/ionization mass spectrometry (MALDI-MS). We have found that back-exchange depends on the presence of the RNase-back-exchange was not observed once the enzyme was removed from the sample. With RNase present, at all pH values examined (from acidic to basic pH), back-exchange was detected at incubation above room temperature. The rates and extent of back-exchange were similar at all pH values. In contrast, back-exchange in the presence of RNase was found to be especially sensitive to incubation temperature-at temperatures below room temperature, minimal back-exchange was detected. However, back-exchange increased as the incubation temperature increased. Based on these findings, appropriate sample-handling and sample storage conditions for isotopically labeled endonuclease digestion products have been identified, and these conditions should improve the accuracy and precision of results from the relative quantification of RNAs obtained by this approach.
机译:使用同位素标记的核酸内切酶消化产物可以相对定量核糖核酸(RNA)。该方法利用核糖核酸酶(如RNase T1)介导O-18从含有重水的溶液((H2O)-O-18)掺入到核酸内切酶消化产物的3'-末端。相对定量的准确性和精确度取决于同位素掺入的效率以及在质谱分析之前或期间使任何可能的O-18到O-16反向交换最小化的情况。在这里,我们研究了O-18标记的核酸内切酶消化产物反向交换的稳定性。特别是,使用基质辅助激光解吸/电离质谱(MALDI-MS)检查了pH,温度和RNase的存在对反向交换过程的影响。我们已经发现,反向交换取决于RNase的存在。一旦从样品中去除了酶,就不会观察到反向交换。在存在RNase的情况下,在所有检查的pH值(从酸性到碱性pH)下,在高于室温的温育条件下均检测到了反向交换。在所有pH值下,反向交换的速率和程度均相似。相反,发现存在RNase的反向交换对孵育温度特别敏感-在低于室温的温度下,检测到最小的反向交换。但是,随着温育温度的升高,反向交换也随之增加。根据这些发现,已经确定了同位素标记的核酸内切酶消化产物的适当样品处理和样品存储条件,这些条件应提高通过这种方法获得的RNA的相对定量结果的准确性和准确性。

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