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可扩展的双荧光分析法,用于 HNF-4α 错义变异的功能解读。

Scalable Dual-Fluorescence Assay for Functional Interpretation of HNF-4α Missense Variants.

机构信息

College of Life Sciences, the University of Chinese Academy of Sciences, Beijing, China.

Guangzhou Laboratory, Guangzhou, China.

出版信息

Front Endocrinol (Lausanne). 2022 Feb 14;13:812747. doi: 10.3389/fendo.2022.812747. eCollection 2022.

Abstract

AIM

The study aimed to develop a scalable dual-fluorescence assay in cells to enable the functional interpretation of HNF-4α missense variants identified in exome sequencing, which can be used to guide clinical diagnosis.

METHODS

Using mOrange2 and GFP fluorescence proteins to track the expression of HNF-4α (HNF-4α-mOrange2) and reporter activity under the control of the HNF-1α promoter (pHNF1A-GFP), respectively, we designed a dual-fluorescence assay to evaluate the expression level, cellular localization, and transcriptional function of HNF-4α simultaneously in live cells. To assess the scalable characteristic of the assay, a small library containing five previously reported mutations and wild-type HNF-4α was constructed. Cells infected with this library were sorted into different populations through fluorescence-activated cell sorting (FACS) according to the transcription activity and expression abundance. Cloning and Sanger sequencing were used to detect the mutations of the different groups. High content screening (HCS) assay was used for the validation of individual mutants in the function and expression point of view.

RESULTS

HNF-4α-mOrange2 exhibited nuclear localization and transactivation capability on the HNF-1α promoter as physical HNF-4α does. The expression of HNF-4α-mOrange2 shows a 6-fold induction of GFP expression compared to the control without HNF-4α-mOrange2, which was significantly abolished by the known loss-of-function mutant M373R. The different performances of wild-type and mutant M373R made them distinguishable in the FACS system, empowering the scalable capability of this assay for classifying large numbers of variants combining functional stratification and sequencing. Further application of the assay in the small library showed that three cell populations were seen grouped as Normal (same transactivation as wild type), Reduced (reduced transactivation with normal or higher expression), and Reduced (reduced transactivation with lower expression). Subsequently, Sanger sequencing showed that wild-type HNF-4α was in the Normal group, two mutations (M373R and G79C) were enriched in the Reduced group, and three mutations (C115S, L272P, and F83C) belonged to the Reduced group. These results were validated by further imaging data using HCS assay for individual mutation.

CONCLUSIONS

Our study proposes a scalable and informative approach for the characterization of the variants in HNF-4α genes in a quantitative and high-throughput manner.

摘要

目的

本研究旨在开发一种可扩展的细胞双荧光测定法,以实现外显子组测序中鉴定的 HNF-4α 错义变异的功能解释,从而指导临床诊断。

方法

使用 mOrange2 和 GFP 荧光蛋白分别跟踪 HNF-4α(HNF-4α-mOrange2)的表达和在 HNF-1α 启动子(pHNF1A-GFP)控制下的报告基因活性,我们设计了一种双荧光测定法,以同时评估活细胞中 HNF-4α 的表达水平、细胞定位和转录功能。为了评估测定法的可扩展性特征,构建了一个包含五个先前报道的突变和野生型 HNF-4α 的小文库。根据转录活性和表达丰度,通过荧光激活细胞分选(FACS)将感染该文库的细胞分选到不同的群体中。克隆和 Sanger 测序用于检测不同群体的突变。高内涵筛选(HCS)测定法用于从功能和表达的角度验证单个突变体。

结果

HNF-4α-mOrange2 表现出核定位和对 HNF-1α 启动子的反式激活能力,与物理 HNF-4α 相同。与没有 HNF-4α-mOrange2 的对照相比,HNF-4α-mOrange2 的表达使 GFP 表达增加了 6 倍,而已知的失活突变 M373R 则显著抑制了这种诱导作用。野生型和突变型 M373R 的不同表现使它们在 FACS 系统中具有可区分性,使该测定法具有对大量变体进行分类的能力,结合功能分层和测序。该测定法在小文库中的进一步应用表明,看到三个细胞群体分为正常(与野生型相同的反式激活)、降低(反式激活减少但表达正常或更高)和降低(反式激活减少且表达较低)。随后,Sanger 测序显示野生型 HNF-4α 位于正常组,两个突变(M373R 和 G79C)富集在降低组,三个突变(C115S、L272P 和 F83C)属于降低组。这些结果通过使用 HCS 测定法对单个突变体进行进一步的成像数据验证。

结论

本研究提出了一种可扩展且信息量丰富的方法,用于以定量和高通量的方式对 HNF-4α 基因中的变体进行表征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cfe2/8883583/9f6ab67840fa/fendo-13-812747-g001.jpg

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