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The miR-106a~363(Xpcl1) miRNA cluster induces murine T cell lymphoma despite transcriptional activation of the p27(Kip1) cell cycle inhibitor

The miR-106a~363 cluster encodes 6 miRNAs on the X-chromosome which are abundant in blood cells and overexpressed in a variety of malignancies. The constituent miRNA of miR-106a~363 have functional activities in vitro that are predicted to be both oncogenic and tumor suppressive, yet little is known...

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Autores principales: Kuppers, Daniel A., Schmitt, Thomas M., Hwang, Harry C., Samraj, Lavanya, Clurman, Bruce E., Fero, Matthew L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5584189/
https://www.ncbi.nlm.nih.gov/pubmed/28881594
http://dx.doi.org/10.18632/oncotarget.16932
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author Kuppers, Daniel A.
Schmitt, Thomas M.
Hwang, Harry C.
Samraj, Lavanya
Clurman, Bruce E.
Fero, Matthew L.
author_facet Kuppers, Daniel A.
Schmitt, Thomas M.
Hwang, Harry C.
Samraj, Lavanya
Clurman, Bruce E.
Fero, Matthew L.
author_sort Kuppers, Daniel A.
collection PubMed
description The miR-106a~363 cluster encodes 6 miRNAs on the X-chromosome which are abundant in blood cells and overexpressed in a variety of malignancies. The constituent miRNA of miR-106a~363 have functional activities in vitro that are predicted to be both oncogenic and tumor suppressive, yet little is known about their physiological functions in vivo. Mature miR-106a~363 (Mirc2) miRNAs are processed from an intragenic, non-protein encoding gene referred to as Xpcl1 (or Kis2), situated at an X-chromosomal locus frequently targeted by retroviruses in murine lymphomas. The oncogenic potential of miR-106a~363(Xpcl1) has not been proven, nor its potential role in T cell development. We show that miR106a~363 levels normally drop at the CD4+/CD8+ double positive (DP) stage of thymocyte development. Forced expression of Xpcl1 at this stage impairs thymocyte maturation and induces T-cell lymphomas. Surprisingly, miR-106a~363(Xpcl1) also induces p27 transcription via Foxo3/4 transcription factors. As a haploinsufficient tumor suppressor, elevated p27 is expected to inhibit lymphomagenesis. Consistent with this, concurrent p27(Kip1) deletion dramatically accelerated lymphomagenesis, indicating that p27 is rate limiting for tumor development by Xpcl1. Whereas down-regulation of miR-106a~363 is important for normal T cell differentiation and for the prevention of lymphomas, eliminating p27 reveals Xpcl1's full oncogenic potential.
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spelling pubmed-55841892017-09-06 The miR-106a~363(Xpcl1) miRNA cluster induces murine T cell lymphoma despite transcriptional activation of the p27(Kip1) cell cycle inhibitor Kuppers, Daniel A. Schmitt, Thomas M. Hwang, Harry C. Samraj, Lavanya Clurman, Bruce E. Fero, Matthew L. Oncotarget Research Paper The miR-106a~363 cluster encodes 6 miRNAs on the X-chromosome which are abundant in blood cells and overexpressed in a variety of malignancies. The constituent miRNA of miR-106a~363 have functional activities in vitro that are predicted to be both oncogenic and tumor suppressive, yet little is known about their physiological functions in vivo. Mature miR-106a~363 (Mirc2) miRNAs are processed from an intragenic, non-protein encoding gene referred to as Xpcl1 (or Kis2), situated at an X-chromosomal locus frequently targeted by retroviruses in murine lymphomas. The oncogenic potential of miR-106a~363(Xpcl1) has not been proven, nor its potential role in T cell development. We show that miR106a~363 levels normally drop at the CD4+/CD8+ double positive (DP) stage of thymocyte development. Forced expression of Xpcl1 at this stage impairs thymocyte maturation and induces T-cell lymphomas. Surprisingly, miR-106a~363(Xpcl1) also induces p27 transcription via Foxo3/4 transcription factors. As a haploinsufficient tumor suppressor, elevated p27 is expected to inhibit lymphomagenesis. Consistent with this, concurrent p27(Kip1) deletion dramatically accelerated lymphomagenesis, indicating that p27 is rate limiting for tumor development by Xpcl1. Whereas down-regulation of miR-106a~363 is important for normal T cell differentiation and for the prevention of lymphomas, eliminating p27 reveals Xpcl1's full oncogenic potential. Impact Journals LLC 2017-04-07 /pmc/articles/PMC5584189/ /pubmed/28881594 http://dx.doi.org/10.18632/oncotarget.16932 Text en Copyright: © 2017 Kuppers et al. http://creativecommons.org/licenses/by/3.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License 3.0 (http://creativecommons.org/licenses/by/3.0/) (CC BY 3.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Kuppers, Daniel A.
Schmitt, Thomas M.
Hwang, Harry C.
Samraj, Lavanya
Clurman, Bruce E.
Fero, Matthew L.
The miR-106a~363(Xpcl1) miRNA cluster induces murine T cell lymphoma despite transcriptional activation of the p27(Kip1) cell cycle inhibitor
title The miR-106a~363(Xpcl1) miRNA cluster induces murine T cell lymphoma despite transcriptional activation of the p27(Kip1) cell cycle inhibitor
title_full The miR-106a~363(Xpcl1) miRNA cluster induces murine T cell lymphoma despite transcriptional activation of the p27(Kip1) cell cycle inhibitor
title_fullStr The miR-106a~363(Xpcl1) miRNA cluster induces murine T cell lymphoma despite transcriptional activation of the p27(Kip1) cell cycle inhibitor
title_full_unstemmed The miR-106a~363(Xpcl1) miRNA cluster induces murine T cell lymphoma despite transcriptional activation of the p27(Kip1) cell cycle inhibitor
title_short The miR-106a~363(Xpcl1) miRNA cluster induces murine T cell lymphoma despite transcriptional activation of the p27(Kip1) cell cycle inhibitor
title_sort mir-106a~363(xpcl1) mirna cluster induces murine t cell lymphoma despite transcriptional activation of the p27(kip1) cell cycle inhibitor
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5584189/
https://www.ncbi.nlm.nih.gov/pubmed/28881594
http://dx.doi.org/10.18632/oncotarget.16932
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