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Human Kidney Tubule-Specific Gene Expression Based Dissection of Chronic Kidney Disease Traits

Chronic kidney disease (CKD) has diverse phenotypic manifestations including structural (such as fibrosis) and functional (such as glomerular filtration rate and albuminuria) alterations. Gene expression profiling has recently gained popularity as an important new tool for precision medicine approac...

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Autores principales: Beckerman, Pazit, Qiu, Chengxiang, Park, Jihwan, Ledo, Nora, Ko, Yi-An, Park, Ae-Seo Deok, Han, Sang-Youb, Choi, Peter, Palmer, Matthew, Susztak, Katalin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5652292/
https://www.ncbi.nlm.nih.gov/pubmed/28970079
http://dx.doi.org/10.1016/j.ebiom.2017.09.014
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author Beckerman, Pazit
Qiu, Chengxiang
Park, Jihwan
Ledo, Nora
Ko, Yi-An
Park, Ae-Seo Deok
Han, Sang-Youb
Choi, Peter
Palmer, Matthew
Susztak, Katalin
author_facet Beckerman, Pazit
Qiu, Chengxiang
Park, Jihwan
Ledo, Nora
Ko, Yi-An
Park, Ae-Seo Deok
Han, Sang-Youb
Choi, Peter
Palmer, Matthew
Susztak, Katalin
author_sort Beckerman, Pazit
collection PubMed
description Chronic kidney disease (CKD) has diverse phenotypic manifestations including structural (such as fibrosis) and functional (such as glomerular filtration rate and albuminuria) alterations. Gene expression profiling has recently gained popularity as an important new tool for precision medicine approaches. Here we used unbiased and directed approaches to understand how gene expression captures different CKD manifestations in patients with diabetic and hypertensive CKD. Transcriptome data from ninety-five microdissected human kidney samples with a range of demographics, functional and structural changes were used for the primary analysis. Data obtained from 41 samples were available for validation. Using the unbiased Weighted Gene Co-Expression Network Analysis (WGCNA) we identified 16 co-expressed gene modules. We found that modules that strongly correlated with eGFR primarily encoded genes with metabolic functions. Gene groups that mainly encoded T-cell receptor and collagen pathways, showed the strongest correlation with fibrosis level, suggesting that these two phenotypic manifestations might have different underlying mechanisms. Linear regression models were then used to identify genes whose expression showed significant correlation with either structural (fibrosis) or functional (eGFR) manifestation and mostly corroborated the WGCNA findings. We concluded that gene expression is a very sensitive sensor of fibrosis, as the expression of 1654 genes correlated with fibrosis even after adjusting to eGFR and other clinical parameters. The association between GFR and gene expression was mostly mediated by fibrosis. In conclusion, our transcriptome-based CKD trait dissection analysis suggests that the association between gene expression and renal function is mediated by structural changes and that there may be differences in pathways that lead to decline in kidney function and the development of fibrosis, respectively.
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spelling pubmed-56522922017-10-25 Human Kidney Tubule-Specific Gene Expression Based Dissection of Chronic Kidney Disease Traits Beckerman, Pazit Qiu, Chengxiang Park, Jihwan Ledo, Nora Ko, Yi-An Park, Ae-Seo Deok Han, Sang-Youb Choi, Peter Palmer, Matthew Susztak, Katalin EBioMedicine Research Paper Chronic kidney disease (CKD) has diverse phenotypic manifestations including structural (such as fibrosis) and functional (such as glomerular filtration rate and albuminuria) alterations. Gene expression profiling has recently gained popularity as an important new tool for precision medicine approaches. Here we used unbiased and directed approaches to understand how gene expression captures different CKD manifestations in patients with diabetic and hypertensive CKD. Transcriptome data from ninety-five microdissected human kidney samples with a range of demographics, functional and structural changes were used for the primary analysis. Data obtained from 41 samples were available for validation. Using the unbiased Weighted Gene Co-Expression Network Analysis (WGCNA) we identified 16 co-expressed gene modules. We found that modules that strongly correlated with eGFR primarily encoded genes with metabolic functions. Gene groups that mainly encoded T-cell receptor and collagen pathways, showed the strongest correlation with fibrosis level, suggesting that these two phenotypic manifestations might have different underlying mechanisms. Linear regression models were then used to identify genes whose expression showed significant correlation with either structural (fibrosis) or functional (eGFR) manifestation and mostly corroborated the WGCNA findings. We concluded that gene expression is a very sensitive sensor of fibrosis, as the expression of 1654 genes correlated with fibrosis even after adjusting to eGFR and other clinical parameters. The association between GFR and gene expression was mostly mediated by fibrosis. In conclusion, our transcriptome-based CKD trait dissection analysis suggests that the association between gene expression and renal function is mediated by structural changes and that there may be differences in pathways that lead to decline in kidney function and the development of fibrosis, respectively. Elsevier 2017-09-17 /pmc/articles/PMC5652292/ /pubmed/28970079 http://dx.doi.org/10.1016/j.ebiom.2017.09.014 Text en © 2017 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Paper
Beckerman, Pazit
Qiu, Chengxiang
Park, Jihwan
Ledo, Nora
Ko, Yi-An
Park, Ae-Seo Deok
Han, Sang-Youb
Choi, Peter
Palmer, Matthew
Susztak, Katalin
Human Kidney Tubule-Specific Gene Expression Based Dissection of Chronic Kidney Disease Traits
title Human Kidney Tubule-Specific Gene Expression Based Dissection of Chronic Kidney Disease Traits
title_full Human Kidney Tubule-Specific Gene Expression Based Dissection of Chronic Kidney Disease Traits
title_fullStr Human Kidney Tubule-Specific Gene Expression Based Dissection of Chronic Kidney Disease Traits
title_full_unstemmed Human Kidney Tubule-Specific Gene Expression Based Dissection of Chronic Kidney Disease Traits
title_short Human Kidney Tubule-Specific Gene Expression Based Dissection of Chronic Kidney Disease Traits
title_sort human kidney tubule-specific gene expression based dissection of chronic kidney disease traits
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5652292/
https://www.ncbi.nlm.nih.gov/pubmed/28970079
http://dx.doi.org/10.1016/j.ebiom.2017.09.014
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