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Human Transcriptome Array Analysis Identifies CDR2 as a Novel Suppressed Gene for Kawasaki Disease

Kawasaki disease (KD) is a febrile childhood vasculitis that involves the coronary arteries. Most previous studies have focused on the genes activated in the acute phase of KD. However, in this study, we focused on suppressed genes in the acute stage of KD and identified novel targets with clinical...

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Autores principales: Huang, Ying-Hsien, Chen, Kuang-Den, Kuo, Kuang-Che, Guo, Mindy Ming-Huey, Chang, Ling-Sai, Yang, Ya-Ling, Kuo, Ho-Chang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8871175/
https://www.ncbi.nlm.nih.gov/pubmed/35204331
http://dx.doi.org/10.3390/diagnostics12020240
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author Huang, Ying-Hsien
Chen, Kuang-Den
Kuo, Kuang-Che
Guo, Mindy Ming-Huey
Chang, Ling-Sai
Yang, Ya-Ling
Kuo, Ho-Chang
author_facet Huang, Ying-Hsien
Chen, Kuang-Den
Kuo, Kuang-Che
Guo, Mindy Ming-Huey
Chang, Ling-Sai
Yang, Ya-Ling
Kuo, Ho-Chang
author_sort Huang, Ying-Hsien
collection PubMed
description Kawasaki disease (KD) is a febrile childhood vasculitis that involves the coronary arteries. Most previous studies have focused on the genes activated in the acute phase of KD. However, in this study, we focused on suppressed genes in the acute stage of KD and identified novel targets with clinical significance and potential prognostic value for KD patients. We enrolled 18 patients with KD, 18 healthy controls (HC), and 18 febrile controls (FC) for human transcriptome array analysis. Another 19 healthy controls, 20 febrile controls, and 31 patients with KD were recruited for RT-PCR validation of target mRNA expressions. The results of Human Transcriptome Array (HTA) 2.0 showed 461 genes that were significantly higher in KD and then normalized after IVIG, as well as 99 suppressed genes in KD. Furthermore, we identified the four genes in KD with the most downregulation, including BCL11B, DUSP2, DDX24, and CDR2, as well as the upregulation of their expression following IVIG administration. The mRNA expression of CDR2 by qRT-PCR was the most compatible with the pattern of the HTA2.0 results. Furthermore, we found higher DDX24 mRNA expression in KD patients with CAL when compared to those without CAL 3 weeks after IVIG administration. In summary, activated gene expression represented a majority in the immune response of KD. In this study, we identified CDR2 as a novel suppressed gene for Kawasaki disease via human transcriptome array analysis and DDX24 associated with CAL formation, which may contribute to further understanding of CAL pathogenesis in KD.
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spelling pubmed-88711752022-02-25 Human Transcriptome Array Analysis Identifies CDR2 as a Novel Suppressed Gene for Kawasaki Disease Huang, Ying-Hsien Chen, Kuang-Den Kuo, Kuang-Che Guo, Mindy Ming-Huey Chang, Ling-Sai Yang, Ya-Ling Kuo, Ho-Chang Diagnostics (Basel) Article Kawasaki disease (KD) is a febrile childhood vasculitis that involves the coronary arteries. Most previous studies have focused on the genes activated in the acute phase of KD. However, in this study, we focused on suppressed genes in the acute stage of KD and identified novel targets with clinical significance and potential prognostic value for KD patients. We enrolled 18 patients with KD, 18 healthy controls (HC), and 18 febrile controls (FC) for human transcriptome array analysis. Another 19 healthy controls, 20 febrile controls, and 31 patients with KD were recruited for RT-PCR validation of target mRNA expressions. The results of Human Transcriptome Array (HTA) 2.0 showed 461 genes that were significantly higher in KD and then normalized after IVIG, as well as 99 suppressed genes in KD. Furthermore, we identified the four genes in KD with the most downregulation, including BCL11B, DUSP2, DDX24, and CDR2, as well as the upregulation of their expression following IVIG administration. The mRNA expression of CDR2 by qRT-PCR was the most compatible with the pattern of the HTA2.0 results. Furthermore, we found higher DDX24 mRNA expression in KD patients with CAL when compared to those without CAL 3 weeks after IVIG administration. In summary, activated gene expression represented a majority in the immune response of KD. In this study, we identified CDR2 as a novel suppressed gene for Kawasaki disease via human transcriptome array analysis and DDX24 associated with CAL formation, which may contribute to further understanding of CAL pathogenesis in KD. MDPI 2022-01-19 /pmc/articles/PMC8871175/ /pubmed/35204331 http://dx.doi.org/10.3390/diagnostics12020240 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Huang, Ying-Hsien
Chen, Kuang-Den
Kuo, Kuang-Che
Guo, Mindy Ming-Huey
Chang, Ling-Sai
Yang, Ya-Ling
Kuo, Ho-Chang
Human Transcriptome Array Analysis Identifies CDR2 as a Novel Suppressed Gene for Kawasaki Disease
title Human Transcriptome Array Analysis Identifies CDR2 as a Novel Suppressed Gene for Kawasaki Disease
title_full Human Transcriptome Array Analysis Identifies CDR2 as a Novel Suppressed Gene for Kawasaki Disease
title_fullStr Human Transcriptome Array Analysis Identifies CDR2 as a Novel Suppressed Gene for Kawasaki Disease
title_full_unstemmed Human Transcriptome Array Analysis Identifies CDR2 as a Novel Suppressed Gene for Kawasaki Disease
title_short Human Transcriptome Array Analysis Identifies CDR2 as a Novel Suppressed Gene for Kawasaki Disease
title_sort human transcriptome array analysis identifies cdr2 as a novel suppressed gene for kawasaki disease
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8871175/
https://www.ncbi.nlm.nih.gov/pubmed/35204331
http://dx.doi.org/10.3390/diagnostics12020240
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