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

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...

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Autores principales: Guo, Yiming, Zhao, Jing, Huang, Rong, Xu, Tao, Zhou, Kaixin, Zheng, Li
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8883583/
https://www.ncbi.nlm.nih.gov/pubmed/35237236
http://dx.doi.org/10.3389/fendo.2022.812747
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author Guo, Yiming
Zhao, Jing
Huang, Rong
Xu, Tao
Zhou, Kaixin
Zheng, Li
author_facet Guo, Yiming
Zhao, Jing
Huang, Rong
Xu, Tao
Zhou, Kaixin
Zheng, Li
author_sort Guo, Yiming
collection PubMed
description 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(exp_nor) (reduced transactivation with normal or higher expression), and Reduced(exp_low) (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(exp_nor) group, and three mutations (C115S, L272P, and F83C) belonged to the Reduced(exp_low) 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.
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spelling pubmed-88835832022-03-01 Scalable Dual-Fluorescence Assay for Functional Interpretation of HNF-4α Missense Variants Guo, Yiming Zhao, Jing Huang, Rong Xu, Tao Zhou, Kaixin Zheng, Li Front Endocrinol (Lausanne) Endocrinology 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(exp_nor) (reduced transactivation with normal or higher expression), and Reduced(exp_low) (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(exp_nor) group, and three mutations (C115S, L272P, and F83C) belonged to the Reduced(exp_low) 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. Frontiers Media S.A. 2022-02-14 /pmc/articles/PMC8883583/ /pubmed/35237236 http://dx.doi.org/10.3389/fendo.2022.812747 Text en Copyright © 2022 Guo, Zhao, Huang, Xu, Zhou and Zheng https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Endocrinology
Guo, Yiming
Zhao, Jing
Huang, Rong
Xu, Tao
Zhou, Kaixin
Zheng, Li
Scalable Dual-Fluorescence Assay for Functional Interpretation of HNF-4α Missense Variants
title Scalable Dual-Fluorescence Assay for Functional Interpretation of HNF-4α Missense Variants
title_full Scalable Dual-Fluorescence Assay for Functional Interpretation of HNF-4α Missense Variants
title_fullStr Scalable Dual-Fluorescence Assay for Functional Interpretation of HNF-4α Missense Variants
title_full_unstemmed Scalable Dual-Fluorescence Assay for Functional Interpretation of HNF-4α Missense Variants
title_short Scalable Dual-Fluorescence Assay for Functional Interpretation of HNF-4α Missense Variants
title_sort scalable dual-fluorescence assay for functional interpretation of hnf-4α missense variants
topic Endocrinology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8883583/
https://www.ncbi.nlm.nih.gov/pubmed/35237236
http://dx.doi.org/10.3389/fendo.2022.812747
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