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基于信息理论的外显子定义预测突变 mRNA 剪接异构体。

Prediction of mutant mRNA splice isoforms by information theory-based exon definition.

机构信息

Department of Biochemistry, Western University, London, Ontario, Canada.

出版信息

Hum Mutat. 2013 Apr;34(4):557-65. doi: 10.1002/humu.22277. Epub 2013 Feb 21.

Abstract

Mutations that affect mRNA splicing often produce multiple mRNA isoforms, resulting in complex molecular phenotypes. Definition of an exon and its inclusion in mature mRNA relies on joint recognition of both acceptor and donor splice sites. This study predicts cryptic and exon-skipping isoforms in mRNA produced by splicing mutations from the combined information contents (R(i), which measures binding-site strength, in bits) and distribution of the splice sites defining these exons. The total information content of an exon (R(i),total) is the sum of the R(i) values of its acceptor and donor splice sites, adjusted for the self-information of the distance separating these sites, that is, the gap surprisal. Differences between total information contents of an exon (ΔR(i,total)) are predictive of the relative abundance of these exons in distinct processed mRNAs. Constraints on splice site and exon selection are used to eliminate nonconforming and poorly expressed isoforms. Molecular phenotypes are computed by the Automated Splice Site and Exon Definition Analysis (http://splice.uwo.ca) server. Predictions of splicing mutations were highly concordant (85.2%; n = 61) with published expression data. In silico exon definition analysis will contribute to streamlining assessment of abnormal and normal splice isoforms resulting from mutations.

摘要

影响 mRNA 剪接的突变通常会产生多种 mRNA 异构体,从而导致复杂的分子表型。外显子的定义及其在成熟 mRNA 中的包含依赖于对接受体和供体位点的联合识别。本研究通过结合接受体和供体位点的结合位点强度(以位元为单位的 R(i))的信息含量和定义这些外显子的剪接位点的分布,预测由剪接突变产生的 mRNA 中的隐匿和外显子跳跃异构体。外显子的总信息含量(R(i),total)是其接受体和供体位点的 R(i)值之和,经过对分隔这些位点的距离(即间隙惊讶)的自信息进行调整。外显子总信息含量之间的差异(ΔR(i,total))可预测这些外显子在不同加工的 mRNA 中的相对丰度。剪接位点和外显子选择的约束条件用于消除不符合要求和表达水平低的异构体。分子表型通过自动剪接位点和外显子定义分析(http://splice.uwo.ca)服务器进行计算。剪接突变的预测与已发表的表达数据高度一致(85.2%;n=61)。基于计算的外显子定义分析将有助于简化对突变引起的异常和正常剪接异构体的评估。

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