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靶标对齐:一种用于植物 microRNA 靶标鉴定的工具。

Target-align: a tool for plant microRNA target identification.

机构信息

Department of Biology, East Carolina University, Greenville, NC 27858, USA.

出版信息

Bioinformatics. 2010 Dec 1;26(23):3002-3. doi: 10.1093/bioinformatics/btq568. Epub 2010 Oct 7.

Abstract

MOTIVATION

MicroRNAs (miRNAs) are important regulatory molecules. A critical step in elucidating miRNA function is identifying potential miRNA targets. However, few reliable tools have been developed for identifying miRNA targets in plants.

RESULTS

Here, we developed a Smith-Waterman-like alignment tool in order to accurately predict miRNA targets. Dynamic programming was used to build a score matrix based on the complementarity of nucleotides in order to trace the optimal local alignments. Important parameters, such as maximum mismatches and maximum consecutive mismatches between miRNAs and their targets, were also used for filtering the optimal local alignments. Almost all of the parameters in this alignment tool can be adjusted by users. Compared to other target prediction tools, Target-align exhibits strong sensitivity and accuracy for identifying miRNA targets. More importantly, Target-align can identify multi-target sites as well potential for non-cleaved targets sites by change the default settings. Windows, web and command-line versions were developed to better serve different users.

AVAILABILITY

http://www.leonxie.com/targetAlign.php.

CONTACT

zhangb@ecu.edu

SUPPLEMENTARY INFORMATION

Supplementary data are available at Bioinformatics online.

摘要

动机

MicroRNAs (miRNAs) 是重要的调控分子。阐明 miRNA 功能的关键步骤是鉴定潜在的 miRNA 靶标。然而,在植物中鉴定 miRNA 靶标的可靠工具很少。

结果

在这里,我们开发了一种类似于 Smith-Waterman 的对齐工具,以便准确预测 miRNA 靶标。动态规划用于构建基于核苷酸互补性的评分矩阵,以跟踪最佳局部比对。还使用了最大错配和 miRNA 与其靶标之间最大连续错配等重要参数来过滤最佳局部比对。此对齐工具中的几乎所有参数都可以由用户调整。与其他靶标预测工具相比,Target-align 对识别 miRNA 靶标具有很强的灵敏度和准确性。更重要的是,通过更改默认设置,Target-align 可以识别多靶位点以及潜在的非切割靶位点。开发了 Windows、Web 和命令行版本,以更好地服务于不同的用户。

可用性

http://www.leonxie.com/targetAlign.php。

联系人

zhangb@ecu.edu

补充信息

补充数据可在 Bioinformatics 在线获得。

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