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无偏管家基因面板选择用于高有效性基因表达分析。

Un-biased housekeeping gene panel selection for high-validity gene expression analysis.

机构信息

Department of Neurology and Center for Translational Neuro- and Behavioural Sciences (C-TNBS), University Clinics Essen, Essen, Germany.

Department of Pharmacology & Personalised Medicine, MeHNS, Faculty of Health, Medicine and Life Sciences, Maastricht University, Maastricht, The Netherlands.

出版信息

Sci Rep. 2022 Jul 19;12(1):12324. doi: 10.1038/s41598-022-15989-8.

Abstract

Differential gene expression normalised to a single housekeeping (HK) is used to identify disease mechanisms and therapeutic targets. HK gene selection is often arbitrary, potentially introducing systematic error and discordant results. Here we examine these risks in a disease model of brain hypoxia. We first identified the eight most frequently used HK genes through a systematic review. However, we observe that in both ex-vivo and in vivo, their expression levels varied considerably between conditions. When applying these genes to normalise expression levels of the validated stroke target gene, inducible Nox4, we obtained opposing results. As an alternative tool for unbiased HK gene selection, software tools exist but are limited to individual datasets lacking genome-wide search capability and user-friendly interfaces. We, therefore, developed the HouseKeepR algorithm to rapidly analyse multiple gene expression datasets in a disease-specific manner and rank HK gene candidates according to stability in an unbiased manner. Using a panel of de novo top-ranked HK genes for brain hypoxia, but not single genes, Nox4 induction was consistently reproduced. Thus, differential gene expression analysis is best normalised against a HK gene panel selected in an unbiased manner. HouseKeepR is the first user-friendly, bias-free, and broadly applicable tool to automatically propose suitable HK genes in a tissue- and disease-dependent manner.

摘要

将归一化到单个管家(HK)的差异基因表达用于识别疾病机制和治疗靶点。HK 基因的选择通常是任意的,可能会引入系统误差和不一致的结果。在这里,我们在脑缺氧疾病模型中检查了这些风险。我们首先通过系统评价确定了最常用的八个 HK 基因。然而,我们观察到,在离体和体内,它们的表达水平在不同条件下差异很大。当将这些基因应用于归一化验证的中风靶基因诱导型 Nox4 的表达水平时,我们得到了相反的结果。作为一种用于无偏 HK 基因选择的替代工具,软件工具虽然存在,但仅限于缺乏全基因组搜索能力和用户友好界面的单个数据集。因此,我们开发了 HouseKeepR 算法,以便以疾病特异性的方式快速分析多个基因表达数据集,并根据无偏性对 HK 基因候选物进行稳定度排名。使用一组新的排名靠前的用于脑缺氧的 HK 基因(而不是单个基因),一致地重现了 Nox4 的诱导。因此,差异基因表达分析最好针对无偏性选择的 HK 基因面板进行归一化。HouseKeepR 是第一个用户友好、无偏倚且广泛适用的工具,可自动以组织和疾病依赖的方式提出合适的 HK 基因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/61b4/9296577/9bf78545e4e5/41598_2022_15989_Fig1_HTML.jpg

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