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Urinary Cell Transcriptome Profiling and Identification of ITM2A, SLAMF6, and IKZF3 as Biomarkers of Acute Rejection in Human Kidney Allografts

Identification of a shared gene expression pattern between T cell–mediated rejection (TCMR) and antibody-mediated rejection (AMR) in human kidney allografts may help prioritize targets for the treatment of both types of acute rejection. METHODS. We performed RNA sequencing and bioinformatics of geno...

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Autores principales: Dooley, Bryan J., Verma, Akanksha, Ding, Ruchuang, Yang, Hua, Muthukumar, Thangamani, Lubetzky, Michele, Shankaranarayanan, Divya, Elemento, Olivier, Suthanthiran, Manikkam
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Lippincott Williams & Wilkins 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7377920/
https://www.ncbi.nlm.nih.gov/pubmed/32766436
http://dx.doi.org/10.1097/TXD.0000000000001035
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author Dooley, Bryan J.
Verma, Akanksha
Ding, Ruchuang
Yang, Hua
Muthukumar, Thangamani
Lubetzky, Michele
Shankaranarayanan, Divya
Elemento, Olivier
Suthanthiran, Manikkam
author_facet Dooley, Bryan J.
Verma, Akanksha
Ding, Ruchuang
Yang, Hua
Muthukumar, Thangamani
Lubetzky, Michele
Shankaranarayanan, Divya
Elemento, Olivier
Suthanthiran, Manikkam
author_sort Dooley, Bryan J.
collection PubMed
description Identification of a shared gene expression pattern between T cell–mediated rejection (TCMR) and antibody-mediated rejection (AMR) in human kidney allografts may help prioritize targets for the treatment of both types of acute rejection. METHODS. We performed RNA sequencing and bioinformatics of genome-wide transcriptome profiles of urinary cells to identify novel mRNAs shared between TCMR and AMR and of mechanistic relevance. Customized RT-QPCR assays were then used to validate their abundance in urinary cells. Urinary cell transcriptome profiles and mRNA abundance were assessed in 22 urine samples matched to 22 TCMR biopsies, 7 samples matched to 7 AMR biopsies, and 24 samples matched to 24 No Rejection (NR) biopsies and correlated with biopsy diagnosis. RESULTS. RNA sequencing data and bioinformatics identified 127 genes in urine to be shared between TCMR and AMR. We selected 3 novel mRNAs—ITM2A, SLAMF6, and IKZF3—for absolute quantification and validation by customized RT-QPCR assays. The abundance of all 3 mRNAs was significantly higher in urine matched to TCMR or AMR than in urine matched to NR biopsies. Receiver-operating-characteristic curve analysis showed that all 3 mRNAs distinguished TCMR or AMR from NR. Their abundance was similar in patients with TCMR and those with AMR. CONCLUSIONS. State-of-the-art antirejection therapies are mostly effective to treat TCMR but not AMR. Our identification of mRNAs shared between TCMR and AMR and contributing to T cell–B cell interactions may help prioritize therapeutic targets for the simultaneous treatment of TCMR and AMR.
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spelling pubmed-73779202020-08-05 Urinary Cell Transcriptome Profiling and Identification of ITM2A, SLAMF6, and IKZF3 as Biomarkers of Acute Rejection in Human Kidney Allografts Dooley, Bryan J. Verma, Akanksha Ding, Ruchuang Yang, Hua Muthukumar, Thangamani Lubetzky, Michele Shankaranarayanan, Divya Elemento, Olivier Suthanthiran, Manikkam Transplant Direct Kidney Transplantation Identification of a shared gene expression pattern between T cell–mediated rejection (TCMR) and antibody-mediated rejection (AMR) in human kidney allografts may help prioritize targets for the treatment of both types of acute rejection. METHODS. We performed RNA sequencing and bioinformatics of genome-wide transcriptome profiles of urinary cells to identify novel mRNAs shared between TCMR and AMR and of mechanistic relevance. Customized RT-QPCR assays were then used to validate their abundance in urinary cells. Urinary cell transcriptome profiles and mRNA abundance were assessed in 22 urine samples matched to 22 TCMR biopsies, 7 samples matched to 7 AMR biopsies, and 24 samples matched to 24 No Rejection (NR) biopsies and correlated with biopsy diagnosis. RESULTS. RNA sequencing data and bioinformatics identified 127 genes in urine to be shared between TCMR and AMR. We selected 3 novel mRNAs—ITM2A, SLAMF6, and IKZF3—for absolute quantification and validation by customized RT-QPCR assays. The abundance of all 3 mRNAs was significantly higher in urine matched to TCMR or AMR than in urine matched to NR biopsies. Receiver-operating-characteristic curve analysis showed that all 3 mRNAs distinguished TCMR or AMR from NR. Their abundance was similar in patients with TCMR and those with AMR. CONCLUSIONS. State-of-the-art antirejection therapies are mostly effective to treat TCMR but not AMR. Our identification of mRNAs shared between TCMR and AMR and contributing to T cell–B cell interactions may help prioritize therapeutic targets for the simultaneous treatment of TCMR and AMR. Lippincott Williams & Wilkins 2020-07-22 /pmc/articles/PMC7377920/ /pubmed/32766436 http://dx.doi.org/10.1097/TXD.0000000000001035 Text en Copyright © 2020 The Author(s). Transplantation Direct. Published by Wolters Kluwer Health, Inc. This is an open-access article distributed under the terms of the Creative Commons Attribution-Non Commercial-No Derivatives License 4.0 (CCBY-NC-ND) (http://creativecommons.org/licenses/by-nc-nd/4.0/) , where it is permissible to download and share the work provided it is properly cited. The work cannot be changed in any way or used commercially without permission from the journal.
spellingShingle Kidney Transplantation
Dooley, Bryan J.
Verma, Akanksha
Ding, Ruchuang
Yang, Hua
Muthukumar, Thangamani
Lubetzky, Michele
Shankaranarayanan, Divya
Elemento, Olivier
Suthanthiran, Manikkam
Urinary Cell Transcriptome Profiling and Identification of ITM2A, SLAMF6, and IKZF3 as Biomarkers of Acute Rejection in Human Kidney Allografts
title Urinary Cell Transcriptome Profiling and Identification of ITM2A, SLAMF6, and IKZF3 as Biomarkers of Acute Rejection in Human Kidney Allografts
title_full Urinary Cell Transcriptome Profiling and Identification of ITM2A, SLAMF6, and IKZF3 as Biomarkers of Acute Rejection in Human Kidney Allografts
title_fullStr Urinary Cell Transcriptome Profiling and Identification of ITM2A, SLAMF6, and IKZF3 as Biomarkers of Acute Rejection in Human Kidney Allografts
title_full_unstemmed Urinary Cell Transcriptome Profiling and Identification of ITM2A, SLAMF6, and IKZF3 as Biomarkers of Acute Rejection in Human Kidney Allografts
title_short Urinary Cell Transcriptome Profiling and Identification of ITM2A, SLAMF6, and IKZF3 as Biomarkers of Acute Rejection in Human Kidney Allografts
title_sort urinary cell transcriptome profiling and identification of itm2a, slamf6, and ikzf3 as biomarkers of acute rejection in human kidney allografts
topic Kidney Transplantation
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7377920/
https://www.ncbi.nlm.nih.gov/pubmed/32766436
http://dx.doi.org/10.1097/TXD.0000000000001035
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