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通过统计学扩展tau评分来稳健且严格地鉴定组织特异性基因。

Robust and rigorous identification of tissue-specific genes by statistically extending tau score.

作者信息

Lüleci Hatice Büşra, Yılmaz Alper

机构信息

Department of Bioengineering, Gebze Technical University, Kocaeli, Turkey.

Department of Bioengineering, Yildiz Technical University, Istanbul, Turkey.

出版信息

BioData Min. 2022 Dec 9;15(1):31. doi: 10.1186/s13040-022-00315-9.

Abstract

OBJECTIVES

In this study, we aimed to identify tissue-specific genes for various human tissues/organs more robustly and rigorously by extending the tau score algorithm.

INTRODUCTION

Tissue-specific genes are a class of genes whose functions and expressions are preferred in one or several tissues restrictedly. Identification of tissue-specific genes is essential for discovering multi-cellular biological processes such as tissue-specific molecular regulations, tissue development, physiology, and the pathogenesis of tissue-associated diseases.

MATERIALS AND METHODS

Gene expression data derived from five large RNA sequencing (RNA-seq) projects, spanning 96 different human tissues, were retrieved from ArrayExpress and ExpressionAtlas. The first step is categorizing genes using significant filters and tau score as a specificity index. After calculating tau for each gene in all datasets separately, statistical distance from the maximum expression level was estimated using a new meaningful procedure. Specific expression of a gene in one or several tissues was calculated after the integration of tau and statistical distance estimation, which is called as extended tau approach. Obtained tissue-specific genes for 96 different human tissues were functionally annotated, and some comparisons were carried out to show the effectiveness of the extended tau method.

RESULTS AND DISCUSSION

Categorization of genes based on expression level and identification of tissue-specific genes for a large number of tissues/organs were executed. Genes were successfully assigned to multiple tissues by generating the extended tau approach as opposed to the original tau score, which can assign tissue specificity to single tissue only.

摘要

目的

在本研究中,我们旨在通过扩展tau评分算法,更稳健、严格地鉴定各种人体组织/器官的组织特异性基因。

引言

组织特异性基因是一类在一个或几个组织中功能和表达受到限制的基因。鉴定组织特异性基因对于发现多细胞生物学过程至关重要,如组织特异性分子调控、组织发育、生理学以及组织相关疾病的发病机制。

材料和方法

从ArrayExpress和ExpressionAtlas中检索来自五个大型RNA测序(RNA-seq)项目、涵盖96种不同人体组织的基因表达数据。第一步是使用显著过滤器和tau评分作为特异性指标对基因进行分类。在分别计算所有数据集中每个基因的tau之后,使用一种新的有意义的程序估计与最大表达水平的统计距离。在整合tau和统计距离估计后,计算基因在一个或几个组织中的特异性表达,这被称为扩展tau方法。对获得的96种不同人体组织的组织特异性基因进行功能注释,并进行了一些比较以展示扩展tau方法的有效性。

结果与讨论

基于表达水平对基因进行了分类,并鉴定了大量组织/器官的组织特异性基因。通过生成扩展tau方法,成功地将基因分配到多个组织,这与原始tau评分不同,原始tau评分只能将组织特异性分配到单个组织。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8434/9733102/3f435c249a36/13040_2022_315_Fig1_HTML.jpg

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