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首页> 外文期刊>BMC research notes >Antisense sequencing improves the accuracy and precision of A-to-I editing measurements using the peak height ratio method
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Antisense sequencing improves the accuracy and precision of A-to-I editing measurements using the peak height ratio method

机译:反义测序使用峰高比方法提高了A对I编辑测量的准确性和准确性

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Background A-to-I RNA editing is found in all phyla of animals and contributes to transcript diversity that may have profound impacts on behavior and physiology. Many transcripts of genes involved in axonal conductance, synaptic transmission and modulation are the targets of A-to-I RNA editing. There are a number of methods to measure the extent of A-to-I RNA editing, but they are generally costly and time consuming. One way to determine the frequency of A-to-I RNA editing is the peak height ratio method, which compares the size of peaks on electropherograms that represent unedited and edited sites. Findings Sequencing of 4 editing sites of the Dα6 nicotinic acetylcholine receptor subunit with an antisense primer (which uses T/C peaks to measure unedited and edited sites, respectively) showed very accurate and precise measurements of A-to-I RNA editing. The accuracy and precision were excellent for all editing sites, including those edited with high or low frequencies. The frequency of A-to-I RNA editing was comparable to the editing frequency as measured by clone counting from the same sample. Sequencing these same sites with the sense primer (which uses A/G peaks) yielded inaccurate and imprecise measurements. Conclusions We have validated and improved the accuracy and precision of the peak height ratio method to measure the frequency of A-to-I RNA editing, and shown that results are primer specific. Thus, the correct sequencing primer must be utilized for the most dependable data. When compared to other methods used to measure the frequency of A-to-I RNA editing, the major benefits of the peak height ratio are that this method is inexpensive, fast, non-labor intensive and easily adaptable to many laboratory and field settings.
机译:背景A-to-I RNA编辑存在于动物的所有门中,并且有助于转录本多样性,可能会对行为和生理产生深远影响。涉及轴突传导,突触传递和调节的基因的许多转录本是A对I RNA编辑的目标。有许多方法可以测量A-to-I RNA编辑的程度,但是通常它们既昂贵又耗时。确定A-to-I RNA编辑频率的一种方法是峰高比方法,该方法可比较代表未编辑和已编辑位点的电泳图上峰的大小。发现用反义引物(分别使用T / C峰分别测量未编辑和编辑的位点)对Dα6烟碱乙酰胆碱受体亚基的4个编辑位点进行测序,结果显示A-to-I RNA编辑的测量非常精确。对于所有编辑站点,包括那些以高频或低频进行编辑的站点,其准确性和精确性都非常好。 A-to-I RNA编辑的频率与通过从同一样品中克隆计数测得的编辑频率相当。用正义引物(使用A / G峰)对这些相同位点进行测序,导致测量结果不准确且不准确。结论我们已经验证并提高了峰高比方法测量A-to-I RNA编辑频率的准确性和精密度,并表明结果是引物特异性的。因此,必须将正确的测序引物用于最可靠的数据。与其他用于测量A到I RNA编辑频率的方法相比,峰高比的主要好处是该方法便宜,快速,省力且易于适应许多实验室和现场设置。

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