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首页> 外文期刊>Nucleic Acids Research >In vitro and in silico analysis reveals an efficient algorithm to predict the splicing consequences of mutations at the 5 ' splice sites
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In vitro and in silico analysis reveals an efficient algorithm to predict the splicing consequences of mutations at the 5 ' splice sites

机译:体外和计算机分析揭示了一种有效的算法,可预测5'剪接位点处突变的剪接结果

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We have found that two previously reported exonic mutations in the PINK1 and PARK7 genes affect pre-mRNA splicing. To develop an algorithm to predict underestimated splicing consequences of exonic mutations at the 5' splice site, we constructed and analyzed 31 minigenes carrying exonic splicing mutations and their derivatives. We also examined 189 249 U2-dependent 5' splice sites of the entire human genome and found that a new variable, the SD-Score, which represents a common logarithm of the frequency of a specific 5' splice site, efficiently predicts the splicing consequences of these minigenes. We also employed the information contents (R-i) to improve the prediction accuracy. We validated our algorithm by analyzing 32 additional minigenes as well as 179 previously reported splicing mutations. The SD-Score algorithm predicted aberrant splicings in 198 of 204 sites (sensitivity=97.1%) and normal splicings in 36 of 38 sites (specificity=94.7%). Simulation of all possible exonic mutations at positions -3, -2 and -1 of the 189249 sites predicts that 37.8, 88.8 and 96.8% of these mutations would affect pre-mRNA splicing, respectively. We propose that the SD-Score algorithm is a practical tool to predict splicing consequences of mutations affecting the 5' splice site.
机译:我们已经发现,PINK1和PARK7基因中两个先前报道的外显子突变会影响pre-mRNA剪接。为了开发一种算法来预测5'剪接位点外显子突变的被低估的剪接后果,我们构建并分析了31个携带外显子剪接突变及其衍生物的小基因。我们还检查了整个人类基因组的189 249个依赖U2的5'剪接位点,发现一个新变量SD-Score代表特定5'剪接位点的频率的常见对数,可以有效地预测剪接的结果这些小基因。我们还采用了信息内容(R-i)来提高预测准确性。我们通过分析32个其他小基因以及179个先前报道的剪接突变来验证算法。 SD-Score算法预测204个位点中的198个出现异常剪接(灵敏度= 97.1%),在38个位点中的36个中预测正常剪接(特异性= 94.7%)。在189249位点的-3,-2和-1位置上所有可能的外显子突变的模拟预测,这些突变中的37.8%,88.8%和96.8%分别会影响mRNA的剪接。我们建议SD分数算法是一种实用的工具,可以预测影响5'剪接位点的突变的剪接结果。

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