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从头预测突变诱导的隐蔽剪接位点激活和外显子跳跃。

Ab initio prediction of mutation-induced cryptic splice-site activation and exon skipping.

作者信息

Divina Petr, Kvitkovicova Andrea, Buratti Emanuele, Vorechovsky Igor

机构信息

Division of Human Genetics, University of Southampton School of Medicine, Southampton, UK.

出版信息

Eur J Hum Genet. 2009 Jun;17(6):759-65. doi: 10.1038/ejhg.2008.257. Epub 2009 Jan 14.

Abstract

Mutations that affect splicing of precursor messenger RNAs play a major role in the development of hereditary diseases. Most splicing mutations have been found to eliminate GT or AG dinucleotides that define the 5' and 3' ends of introns, leading to exon skipping or cryptic splice-site activation. Although accurate description of the mis-spliced transcripts is critical for predicting phenotypic consequences of these alterations, their exact nature in affected individuals cannot often be determined experimentally. Using a comprehensive collection of exons that sustained cryptic splice-site activation or were skipped as a result of splice-site mutations, we have developed a multivariate logistic discrimination procedure that distinguishes the two aberrant splicing outcomes from DNA sequences. The new algorithm was validated using an independent sample of exons and implemented as a free online utility termed CRYP-SKIP (http://www.dbass.org.uk/cryp-skip/). The web application takes up one or more mutated alleles, each consisting of one exon and flanking intronic sequences, and provides a list of important predictor variables and their values, the overall probability of activating cryptic splice vs exon skipping, and the location and intrinsic strength of predicted cryptic splice sites in the input sequence. These results will facilitate phenotypic prediction of splicing mutations and provide further insights into splicing enhancer and silencer elements and their relative importance for splice-site selection in vivo.

摘要

影响前体信使核糖核酸剪接的突变在遗传性疾病的发生发展中起主要作用。大多数剪接突变已被发现会消除界定内含子5'和3'末端的GT或AG二核苷酸,导致外显子跳跃或隐蔽剪接位点激活。尽管准确描述错误剪接的转录本对于预测这些改变的表型后果至关重要,但在受影响个体中其确切性质往往无法通过实验确定。利用一组全面的外显子,这些外显子经历了隐蔽剪接位点激活或因剪接位点突变而被跳过,我们开发了一种多变量逻辑判别程序,可从DNA序列中区分这两种异常剪接结果。新算法使用独立的外显子样本进行了验证,并作为一个名为CRYP-SKIP(http://www.dbass.org.uk/cryp-skip/)的免费在线工具实现。该网络应用程序接受一个或多个突变等位基因,每个等位基因由一个外显子和侧翼内含子序列组成,并提供重要预测变量及其值的列表、激活隐蔽剪接与外显子跳跃的总体概率,以及输入序列中预测的隐蔽剪接位点的位置和内在强度。这些结果将有助于对剪接突变进行表型预测,并为剪接增强子和沉默子元件及其在体内剪接位点选择中的相对重要性提供进一步的见解。

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