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NGS Reveals Molecular Pathways Affected by Obesity and Weight Loss-Related Changes in miRNA Levels in Adipose Tissue

Both obesity and weight loss may cause molecular changes in adipose tissue. This study aimed to characterize changes in adipose tissue miRNome in order to identify molecular pathways affected by obesity and weight changes. Next generation sequencing (NGS) was applied to identify microRNAs (miRNAs) d...

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Autores principales: Kuryłowicz, Alina, Wicik, Zofia, Owczarz, Magdalena, Jonas, Marta Izabela, Kotlarek, Marta, Świerniak, Michał, Lisik, Wojciech, Jonas, Maurycy, Noszczyk, Bartłomiej, Puzianowska-Kuźnicka, Monika
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5796016/
https://www.ncbi.nlm.nih.gov/pubmed/29280944
http://dx.doi.org/10.3390/ijms19010066
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author Kuryłowicz, Alina
Wicik, Zofia
Owczarz, Magdalena
Jonas, Marta Izabela
Kotlarek, Marta
Świerniak, Michał
Lisik, Wojciech
Jonas, Maurycy
Noszczyk, Bartłomiej
Puzianowska-Kuźnicka, Monika
author_facet Kuryłowicz, Alina
Wicik, Zofia
Owczarz, Magdalena
Jonas, Marta Izabela
Kotlarek, Marta
Świerniak, Michał
Lisik, Wojciech
Jonas, Maurycy
Noszczyk, Bartłomiej
Puzianowska-Kuźnicka, Monika
author_sort Kuryłowicz, Alina
collection PubMed
description Both obesity and weight loss may cause molecular changes in adipose tissue. This study aimed to characterize changes in adipose tissue miRNome in order to identify molecular pathways affected by obesity and weight changes. Next generation sequencing (NGS) was applied to identify microRNAs (miRNAs) differentially expressed in 47 samples of visceral (VAT) and subcutaneous (SAT) adipose tissues from normal-weight (N), obese (O) and obese after surgery-induced weight loss (PO) individuals. Subsequently miRNA expression was validated by real-time PCR in 197 adipose tissues and bioinformatics analysis performed to identify molecular pathways affected by obesity-related changes in miRNA expression. NGS identified 344 miRNAs expressed in adipose tissues with ≥5 reads per million. Using >2 and <−2 fold change as cut-offs we showed that the expression of 54 miRNAs differed significantly between VAT-O and SAT-O. Equally, between SAT-O and SAT-N, the expression of 20 miRNAs differed significantly, between SAT-PO and SAT-N the expression of 79 miRNAs differed significantly, and between SAT-PO and SAT-O, the expression of 61 miRNAs differed significantly. Ontological analyses disclosed several molecular pathways regulated by these miRNAs in adipose tissue. NGS-based miRNome analysis characterized changes of the miRNA profile of adipose tissue, which are associated with changes of weight possibly responsible for a differential regulation of molecular pathways in adipose tissue when the individual is obese and after the individual has lost weight.
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spelling pubmed-57960162018-02-09 NGS Reveals Molecular Pathways Affected by Obesity and Weight Loss-Related Changes in miRNA Levels in Adipose Tissue Kuryłowicz, Alina Wicik, Zofia Owczarz, Magdalena Jonas, Marta Izabela Kotlarek, Marta Świerniak, Michał Lisik, Wojciech Jonas, Maurycy Noszczyk, Bartłomiej Puzianowska-Kuźnicka, Monika Int J Mol Sci Article Both obesity and weight loss may cause molecular changes in adipose tissue. This study aimed to characterize changes in adipose tissue miRNome in order to identify molecular pathways affected by obesity and weight changes. Next generation sequencing (NGS) was applied to identify microRNAs (miRNAs) differentially expressed in 47 samples of visceral (VAT) and subcutaneous (SAT) adipose tissues from normal-weight (N), obese (O) and obese after surgery-induced weight loss (PO) individuals. Subsequently miRNA expression was validated by real-time PCR in 197 adipose tissues and bioinformatics analysis performed to identify molecular pathways affected by obesity-related changes in miRNA expression. NGS identified 344 miRNAs expressed in adipose tissues with ≥5 reads per million. Using >2 and <−2 fold change as cut-offs we showed that the expression of 54 miRNAs differed significantly between VAT-O and SAT-O. Equally, between SAT-O and SAT-N, the expression of 20 miRNAs differed significantly, between SAT-PO and SAT-N the expression of 79 miRNAs differed significantly, and between SAT-PO and SAT-O, the expression of 61 miRNAs differed significantly. Ontological analyses disclosed several molecular pathways regulated by these miRNAs in adipose tissue. NGS-based miRNome analysis characterized changes of the miRNA profile of adipose tissue, which are associated with changes of weight possibly responsible for a differential regulation of molecular pathways in adipose tissue when the individual is obese and after the individual has lost weight. MDPI 2017-12-27 /pmc/articles/PMC5796016/ /pubmed/29280944 http://dx.doi.org/10.3390/ijms19010066 Text en © 2017 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Kuryłowicz, Alina
Wicik, Zofia
Owczarz, Magdalena
Jonas, Marta Izabela
Kotlarek, Marta
Świerniak, Michał
Lisik, Wojciech
Jonas, Maurycy
Noszczyk, Bartłomiej
Puzianowska-Kuźnicka, Monika
NGS Reveals Molecular Pathways Affected by Obesity and Weight Loss-Related Changes in miRNA Levels in Adipose Tissue
title NGS Reveals Molecular Pathways Affected by Obesity and Weight Loss-Related Changes in miRNA Levels in Adipose Tissue
title_full NGS Reveals Molecular Pathways Affected by Obesity and Weight Loss-Related Changes in miRNA Levels in Adipose Tissue
title_fullStr NGS Reveals Molecular Pathways Affected by Obesity and Weight Loss-Related Changes in miRNA Levels in Adipose Tissue
title_full_unstemmed NGS Reveals Molecular Pathways Affected by Obesity and Weight Loss-Related Changes in miRNA Levels in Adipose Tissue
title_short NGS Reveals Molecular Pathways Affected by Obesity and Weight Loss-Related Changes in miRNA Levels in Adipose Tissue
title_sort ngs reveals molecular pathways affected by obesity and weight loss-related changes in mirna levels in adipose tissue
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5796016/
https://www.ncbi.nlm.nih.gov/pubmed/29280944
http://dx.doi.org/10.3390/ijms19010066
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