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Dynamic Expression Profiles of Circular RNAs during Brown to White Adipose Tissue Transformation in Goats (Capra hircus)

SIMPLE SUMMARY: In our study, we launched RNA-seq in order to investigate the potential functions of circRNA during brown adipose tissue (BAT) to white adipose tissue (WAT) transformation. As a result, 6610 circRNAs and 61 differentially expressed circRNAs (DEcircRNAs) were identified. Moreover, 65...

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Autores principales: Zhang, Xujia, Zhan, Siyuan, Yang, Shizhong, Zhong, Tao, Guo, Jiazhong, Cao, Jiaxue, Wang, Yan, Li, Li, Zhang, Hongping, Wang, Linjie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8150810/
https://www.ncbi.nlm.nih.gov/pubmed/34068539
http://dx.doi.org/10.3390/ani11051351
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author Zhang, Xujia
Zhan, Siyuan
Yang, Shizhong
Zhong, Tao
Guo, Jiazhong
Cao, Jiaxue
Wang, Yan
Li, Li
Zhang, Hongping
Wang, Linjie
author_facet Zhang, Xujia
Zhan, Siyuan
Yang, Shizhong
Zhong, Tao
Guo, Jiazhong
Cao, Jiaxue
Wang, Yan
Li, Li
Zhang, Hongping
Wang, Linjie
author_sort Zhang, Xujia
collection PubMed
description SIMPLE SUMMARY: In our study, we launched RNA-seq in order to investigate the potential functions of circRNA during brown adipose tissue (BAT) to white adipose tissue (WAT) transformation. As a result, 6610 circRNAs and 61 differentially expressed circRNAs (DEcircRNAs) were identified. Moreover, 65 miRNAs were detected that could potentially interact with DEcircRNAs. The present study provides a detailed circRNA expression landscape and evidence for circRNA functions in the transformation from BAT to WAT. ABSTRACT: Adipose tissues are mainly divided into brown adipose tissue (BAT) and white adipose tissue (WAT). WAT mainly functions to buffer excess calories, whereas BAT plays a role in the non-shivering thermogenesis to maintain body temperature and energy balance. Moreover, circRNAs play important roles in various biological processes. However, knowledge of the expression profile and function of circRNAs from BAT to WAT remains largely unknown. In this study, a total of 6610 unique circRNAs were identified in the perirenal adipose tissues of 1-day, 30-days, and 1-year goats. Functional annotation revealed that host genes of circRNAs were involved in some BAT-related pathways, such as the thyroid hormone signaling pathway, MAPK signaling pathway, and VEGF signaling pathway. Furthermore, a total of 61 DEcircRNAs were detected across three stages. Additionally, five selected circRNAs were validated by RNase R assay, qPCR, and Sanger sequencing. Finally, the circRNA–miRNA network was constructed between the DEcircRNAs and their miRNA binding sites.
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spelling pubmed-81508102021-05-27 Dynamic Expression Profiles of Circular RNAs during Brown to White Adipose Tissue Transformation in Goats (Capra hircus) Zhang, Xujia Zhan, Siyuan Yang, Shizhong Zhong, Tao Guo, Jiazhong Cao, Jiaxue Wang, Yan Li, Li Zhang, Hongping Wang, Linjie Animals (Basel) Article SIMPLE SUMMARY: In our study, we launched RNA-seq in order to investigate the potential functions of circRNA during brown adipose tissue (BAT) to white adipose tissue (WAT) transformation. As a result, 6610 circRNAs and 61 differentially expressed circRNAs (DEcircRNAs) were identified. Moreover, 65 miRNAs were detected that could potentially interact with DEcircRNAs. The present study provides a detailed circRNA expression landscape and evidence for circRNA functions in the transformation from BAT to WAT. ABSTRACT: Adipose tissues are mainly divided into brown adipose tissue (BAT) and white adipose tissue (WAT). WAT mainly functions to buffer excess calories, whereas BAT plays a role in the non-shivering thermogenesis to maintain body temperature and energy balance. Moreover, circRNAs play important roles in various biological processes. However, knowledge of the expression profile and function of circRNAs from BAT to WAT remains largely unknown. In this study, a total of 6610 unique circRNAs were identified in the perirenal adipose tissues of 1-day, 30-days, and 1-year goats. Functional annotation revealed that host genes of circRNAs were involved in some BAT-related pathways, such as the thyroid hormone signaling pathway, MAPK signaling pathway, and VEGF signaling pathway. Furthermore, a total of 61 DEcircRNAs were detected across three stages. Additionally, five selected circRNAs were validated by RNase R assay, qPCR, and Sanger sequencing. Finally, the circRNA–miRNA network was constructed between the DEcircRNAs and their miRNA binding sites. MDPI 2021-05-10 /pmc/articles/PMC8150810/ /pubmed/34068539 http://dx.doi.org/10.3390/ani11051351 Text en © 2021 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
Zhang, Xujia
Zhan, Siyuan
Yang, Shizhong
Zhong, Tao
Guo, Jiazhong
Cao, Jiaxue
Wang, Yan
Li, Li
Zhang, Hongping
Wang, Linjie
Dynamic Expression Profiles of Circular RNAs during Brown to White Adipose Tissue Transformation in Goats (Capra hircus)
title Dynamic Expression Profiles of Circular RNAs during Brown to White Adipose Tissue Transformation in Goats (Capra hircus)
title_full Dynamic Expression Profiles of Circular RNAs during Brown to White Adipose Tissue Transformation in Goats (Capra hircus)
title_fullStr Dynamic Expression Profiles of Circular RNAs during Brown to White Adipose Tissue Transformation in Goats (Capra hircus)
title_full_unstemmed Dynamic Expression Profiles of Circular RNAs during Brown to White Adipose Tissue Transformation in Goats (Capra hircus)
title_short Dynamic Expression Profiles of Circular RNAs during Brown to White Adipose Tissue Transformation in Goats (Capra hircus)
title_sort dynamic expression profiles of circular rnas during brown to white adipose tissue transformation in goats (capra hircus)
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8150810/
https://www.ncbi.nlm.nih.gov/pubmed/34068539
http://dx.doi.org/10.3390/ani11051351
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