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核酸和蛋白质序列的增强图形矩阵分析

Enhanced graphic matrix analysis of nucleic acid and protein sequences.

作者信息

Maizel J V, Lenk R P

出版信息

Proc Natl Acad Sci U S A. 1981 Dec;78(12):7665-9. doi: 10.1073/pnas.78.12.7665.

Abstract

The enhanced graphic matrix procedure analyzes nucleic acid and amino acid sequences for features of possible biological interest and reveals the spatial patterns of such features. When a sequence is compared to itself the technique shows regions of self-complementarity, direct repeats, and palindromic subsequences. Comparison of two different sequences, exemplified by immunoglobulin kappa light chain genes, by using colored graphic matrices showed domains of similarity, regions of divergence, and features explainable by transpositions. Analysis of mouse constant domain immunoglobulin sequences revealed self-complementary regions that can be used to fold the molecule into a structure consistent with electron microscopic observations. Computer translation of nucleic acid sequences into all possible amino acid sequences followed by graphic matrix analysis provides a way to detect the most likely protein encoding regions and can predict the correct reading frames in sequences in which splicing patterns are not defined. Application of this technique to regions of simian virus 40 and polyoma virus demonstrates the frames of translation and shows the agreement of sequences determined in separate laboratories with different virus isolates. The graphic matrix technique can also be used to assemble fragmentary sequences during determination, to display local variations in base composition, to detect distant evolutionary relationships, and to display intragenic variation in rates of evolution.

摘要

增强型图形矩阵程序分析核酸和氨基酸序列中可能具有生物学意义的特征,并揭示这些特征的空间模式。当将一个序列与其自身进行比较时,该技术可显示自我互补区域、直接重复序列和回文子序列。通过使用彩色图形矩阵比较两个不同的序列,以免疫球蛋白κ轻链基因为例,可显示相似性结构域、差异区域以及可通过转座解释的特征。对小鼠恒定结构域免疫球蛋白序列的分析揭示了自我互补区域,这些区域可用于将分子折叠成与电子显微镜观察结果一致的结构。将核酸序列计算机翻译成所有可能的氨基酸序列,然后进行图形矩阵分析,提供了一种检测最可能的蛋白质编码区域的方法,并可预测剪接模式未定义的序列中的正确阅读框。将该技术应用于猴病毒40和多瘤病毒的区域,可证明翻译框架,并显示在不同病毒分离株的独立实验室中确定的序列的一致性。图形矩阵技术还可用于在测定过程中组装片段序列、显示碱基组成的局部变化、检测远距离进化关系以及显示基因内进化速率的变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/adc9/349330/7890f84eaccb/pnas00663-0460-a.jpg

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