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Dysregulation of the PRUNE2/PCA3 genetic axis in human prostate cancer: from experimental discovery to validation in two independent patient cohorts

BACKGROUND: We have previously shown that the long non-coding (lnc)RNA prostate cancer associated 3 (PCA3; formerly prostate cancer antigen 3) functions as a trans-dominant negative oncogene by targeting the previously unrecognized prostate cancer suppressor gene PRUNE2 (a homolog of the Drosophila...

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Autores principales: Lauer, Richard C, Barry, Marc, Smith, Tracey L, Thomas, Andrew Maltez, Wu, Jin, Du, Ruofei, Lee, Ji-Hyun, Rao, Arpit, Dobroff, Andrey S, Arap, Marco A, Nunes, Diana N, Silva, Israel T, Dias-Neto, Emmanuel, Chen, Isan, McCance, Dennis J, Cavenee, Webster K, Pasqualini, Renata, Arap, Wadih
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9886275/
https://www.ncbi.nlm.nih.gov/pubmed/36645410
http://dx.doi.org/10.7554/eLife.81929
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author Lauer, Richard C
Barry, Marc
Smith, Tracey L
Thomas, Andrew Maltez
Wu, Jin
Du, Ruofei
Lee, Ji-Hyun
Rao, Arpit
Dobroff, Andrey S
Arap, Marco A
Nunes, Diana N
Silva, Israel T
Dias-Neto, Emmanuel
Chen, Isan
McCance, Dennis J
Cavenee, Webster K
Pasqualini, Renata
Arap, Wadih
author_facet Lauer, Richard C
Barry, Marc
Smith, Tracey L
Thomas, Andrew Maltez
Wu, Jin
Du, Ruofei
Lee, Ji-Hyun
Rao, Arpit
Dobroff, Andrey S
Arap, Marco A
Nunes, Diana N
Silva, Israel T
Dias-Neto, Emmanuel
Chen, Isan
McCance, Dennis J
Cavenee, Webster K
Pasqualini, Renata
Arap, Wadih
author_sort Lauer, Richard C
collection PubMed
description BACKGROUND: We have previously shown that the long non-coding (lnc)RNA prostate cancer associated 3 (PCA3; formerly prostate cancer antigen 3) functions as a trans-dominant negative oncogene by targeting the previously unrecognized prostate cancer suppressor gene PRUNE2 (a homolog of the Drosophila prune gene), thereby forming a functional unit within a unique allelic locus in human cells. Here, we investigated the PCA3/PRUNE2 regulatory axis from early (tumorigenic) to late (biochemical recurrence) genetic events during human prostate cancer progression. METHODS: The reciprocal PCA3 and PRUNE2 gene expression relationship in paired prostate cancer and adjacent normal prostate was analyzed in two independent retrospective cohorts of clinically annotated cases post-radical prostatectomy: a single-institutional discovery cohort (n=107) and a multi-institutional validation cohort (n=497). We compared the tumor gene expression of PCA3 and PRUNE2 to their corresponding expression in the normal prostate. We also serially examined clinical/pathological variables including time to disease recurrence. RESULTS: We consistently observed increased expression of PCA3 and decreased expression of PRUNE2 in prostate cancer compared with the adjacent normal prostate across all tumor grades and stages. However, there was no association between the relative gene expression levels of PCA3 or PRUNE2 and time to disease recurrence, independent of tumor grades and stages. CONCLUSIONS: We concluded that upregulation of the lncRNA PCA3 and targeted downregulation of the protein-coding PRUNE2 gene in prostate cancer could be early (rather than late) molecular events in the progression of human prostate tumorigenesis but are not associated with biochemical recurrence. Further studies of PCA3/PRUNE2 dysregulation are warranted. FUNDING: We received support from the Human Tissue Repository and Tissue Analysis Shared Resource from the Department of Pathology of the University of New Mexico School of Medicine and a pilot award from the University of New Mexico Comprehensive Cancer Center. RP and WA were supported by awards from the Levy-Longenbaugh Donor-Advised Fund and the Prostate Cancer Foundation. EDN reports research fellowship support from the Brazilian National Council for Scientific and Technological Development (CNPq), Brazil, and the Associação Beneficente Alzira Denise Hertzog Silva (ABADHS), Brazil. This work has been funded in part by the NCI Cancer Center Support Grants (CCSG; P30) to the University of New Mexico Comprehensive Cancer Center (CA118100) and the Rutgers Cancer Institute of New Jersey (CA072720).
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spelling pubmed-98862752023-01-31 Dysregulation of the PRUNE2/PCA3 genetic axis in human prostate cancer: from experimental discovery to validation in two independent patient cohorts Lauer, Richard C Barry, Marc Smith, Tracey L Thomas, Andrew Maltez Wu, Jin Du, Ruofei Lee, Ji-Hyun Rao, Arpit Dobroff, Andrey S Arap, Marco A Nunes, Diana N Silva, Israel T Dias-Neto, Emmanuel Chen, Isan McCance, Dennis J Cavenee, Webster K Pasqualini, Renata Arap, Wadih eLife Medicine BACKGROUND: We have previously shown that the long non-coding (lnc)RNA prostate cancer associated 3 (PCA3; formerly prostate cancer antigen 3) functions as a trans-dominant negative oncogene by targeting the previously unrecognized prostate cancer suppressor gene PRUNE2 (a homolog of the Drosophila prune gene), thereby forming a functional unit within a unique allelic locus in human cells. Here, we investigated the PCA3/PRUNE2 regulatory axis from early (tumorigenic) to late (biochemical recurrence) genetic events during human prostate cancer progression. METHODS: The reciprocal PCA3 and PRUNE2 gene expression relationship in paired prostate cancer and adjacent normal prostate was analyzed in two independent retrospective cohorts of clinically annotated cases post-radical prostatectomy: a single-institutional discovery cohort (n=107) and a multi-institutional validation cohort (n=497). We compared the tumor gene expression of PCA3 and PRUNE2 to their corresponding expression in the normal prostate. We also serially examined clinical/pathological variables including time to disease recurrence. RESULTS: We consistently observed increased expression of PCA3 and decreased expression of PRUNE2 in prostate cancer compared with the adjacent normal prostate across all tumor grades and stages. However, there was no association between the relative gene expression levels of PCA3 or PRUNE2 and time to disease recurrence, independent of tumor grades and stages. CONCLUSIONS: We concluded that upregulation of the lncRNA PCA3 and targeted downregulation of the protein-coding PRUNE2 gene in prostate cancer could be early (rather than late) molecular events in the progression of human prostate tumorigenesis but are not associated with biochemical recurrence. Further studies of PCA3/PRUNE2 dysregulation are warranted. FUNDING: We received support from the Human Tissue Repository and Tissue Analysis Shared Resource from the Department of Pathology of the University of New Mexico School of Medicine and a pilot award from the University of New Mexico Comprehensive Cancer Center. RP and WA were supported by awards from the Levy-Longenbaugh Donor-Advised Fund and the Prostate Cancer Foundation. EDN reports research fellowship support from the Brazilian National Council for Scientific and Technological Development (CNPq), Brazil, and the Associação Beneficente Alzira Denise Hertzog Silva (ABADHS), Brazil. This work has been funded in part by the NCI Cancer Center Support Grants (CCSG; P30) to the University of New Mexico Comprehensive Cancer Center (CA118100) and the Rutgers Cancer Institute of New Jersey (CA072720). eLife Sciences Publications, Ltd 2023-01-16 /pmc/articles/PMC9886275/ /pubmed/36645410 http://dx.doi.org/10.7554/eLife.81929 Text en © 2023, Lauer, Barry et al https://creativecommons.org/licenses/by/4.0/This article is distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Medicine
Lauer, Richard C
Barry, Marc
Smith, Tracey L
Thomas, Andrew Maltez
Wu, Jin
Du, Ruofei
Lee, Ji-Hyun
Rao, Arpit
Dobroff, Andrey S
Arap, Marco A
Nunes, Diana N
Silva, Israel T
Dias-Neto, Emmanuel
Chen, Isan
McCance, Dennis J
Cavenee, Webster K
Pasqualini, Renata
Arap, Wadih
Dysregulation of the PRUNE2/PCA3 genetic axis in human prostate cancer: from experimental discovery to validation in two independent patient cohorts
title Dysregulation of the PRUNE2/PCA3 genetic axis in human prostate cancer: from experimental discovery to validation in two independent patient cohorts
title_full Dysregulation of the PRUNE2/PCA3 genetic axis in human prostate cancer: from experimental discovery to validation in two independent patient cohorts
title_fullStr Dysregulation of the PRUNE2/PCA3 genetic axis in human prostate cancer: from experimental discovery to validation in two independent patient cohorts
title_full_unstemmed Dysregulation of the PRUNE2/PCA3 genetic axis in human prostate cancer: from experimental discovery to validation in two independent patient cohorts
title_short Dysregulation of the PRUNE2/PCA3 genetic axis in human prostate cancer: from experimental discovery to validation in two independent patient cohorts
title_sort dysregulation of the prune2/pca3 genetic axis in human prostate cancer: from experimental discovery to validation in two independent patient cohorts
topic Medicine
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9886275/
https://www.ncbi.nlm.nih.gov/pubmed/36645410
http://dx.doi.org/10.7554/eLife.81929
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