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Human Pot1 OB-fold mutations unleash rampant telomere instability to initiate tumorigenesis

Chromosomal aberrations are a hallmark of human cancers, with complex cytogenetic rearrangements leading to genetic changes permissive for cancer initiation and progression. Protection of Telomere 1 (POT1) is an essential component of the shelterin complex and functions to maintain chromosome stabil...

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Autores principales: Gu, Peili, Wang, Yang, Bisht, Kamlesh K., Wu, Ling, Kukova, Lidiya, Smith, Eric M., Xiao, Yang, Bailey, Susan, Lei, Ming, Nandakumar, Jayakrishnan, Chang, Sandy
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5383532/
https://www.ncbi.nlm.nih.gov/pubmed/27869160
http://dx.doi.org/10.1038/onc.2016.405
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author Gu, Peili
Wang, Yang
Bisht, Kamlesh K.
Wu, Ling
Kukova, Lidiya
Smith, Eric M.
Xiao, Yang
Bailey, Susan
Lei, Ming
Nandakumar, Jayakrishnan
Chang, Sandy
author_facet Gu, Peili
Wang, Yang
Bisht, Kamlesh K.
Wu, Ling
Kukova, Lidiya
Smith, Eric M.
Xiao, Yang
Bailey, Susan
Lei, Ming
Nandakumar, Jayakrishnan
Chang, Sandy
author_sort Gu, Peili
collection PubMed
description Chromosomal aberrations are a hallmark of human cancers, with complex cytogenetic rearrangements leading to genetic changes permissive for cancer initiation and progression. Protection of Telomere 1 (POT1) is an essential component of the shelterin complex and functions to maintain chromosome stability by repressing the activation of aberrant DNA damage and repair responses at telomeres. Sporadic and familial mutations in the oligosaccharide-oligonucleotide (OB) folds of POT1 have been identified in many human cancers, but the mechanism underlying how hPOT1 mutations initiate tumorigenesis has remained unclear. Here we show that the human POT1’s OB-folds are essential for the protection of newly replicated telomeres. Oncogenic mutations in hPOT1 OB-fold fail to bind to ss telomeric DNA, eliciting a DNA damage response at telomeres that promote inappropriate chromosome fusions via the mutagenic alternative non-homologous end joining (A-NHEJ) pathway. hPOT1 mutations also result in telomere elongation and the formation of transplantable hematopoietic malignancies. Strikingly, conditional deletion of both mPot1a and p53 in mouse mammary epithelium resulted in development of highly invasive breast carcinomas and the formation of whole chromosomes containing massive arrays of telomeric fusions reminiscent of chromothripsis. Our results reveal that hPOT1 OB-folds are required to protect and prevent newly replicated telomeres from engaging in A-NHEJ mediated fusions that would otherwise promote genome instability to fuel tumorigenesis.
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spelling pubmed-53835322017-05-21 Human Pot1 OB-fold mutations unleash rampant telomere instability to initiate tumorigenesis Gu, Peili Wang, Yang Bisht, Kamlesh K. Wu, Ling Kukova, Lidiya Smith, Eric M. Xiao, Yang Bailey, Susan Lei, Ming Nandakumar, Jayakrishnan Chang, Sandy Oncogene Article Chromosomal aberrations are a hallmark of human cancers, with complex cytogenetic rearrangements leading to genetic changes permissive for cancer initiation and progression. Protection of Telomere 1 (POT1) is an essential component of the shelterin complex and functions to maintain chromosome stability by repressing the activation of aberrant DNA damage and repair responses at telomeres. Sporadic and familial mutations in the oligosaccharide-oligonucleotide (OB) folds of POT1 have been identified in many human cancers, but the mechanism underlying how hPOT1 mutations initiate tumorigenesis has remained unclear. Here we show that the human POT1’s OB-folds are essential for the protection of newly replicated telomeres. Oncogenic mutations in hPOT1 OB-fold fail to bind to ss telomeric DNA, eliciting a DNA damage response at telomeres that promote inappropriate chromosome fusions via the mutagenic alternative non-homologous end joining (A-NHEJ) pathway. hPOT1 mutations also result in telomere elongation and the formation of transplantable hematopoietic malignancies. Strikingly, conditional deletion of both mPot1a and p53 in mouse mammary epithelium resulted in development of highly invasive breast carcinomas and the formation of whole chromosomes containing massive arrays of telomeric fusions reminiscent of chromothripsis. Our results reveal that hPOT1 OB-folds are required to protect and prevent newly replicated telomeres from engaging in A-NHEJ mediated fusions that would otherwise promote genome instability to fuel tumorigenesis. 2016-11-21 2017-04-06 /pmc/articles/PMC5383532/ /pubmed/27869160 http://dx.doi.org/10.1038/onc.2016.405 Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Gu, Peili
Wang, Yang
Bisht, Kamlesh K.
Wu, Ling
Kukova, Lidiya
Smith, Eric M.
Xiao, Yang
Bailey, Susan
Lei, Ming
Nandakumar, Jayakrishnan
Chang, Sandy
Human Pot1 OB-fold mutations unleash rampant telomere instability to initiate tumorigenesis
title Human Pot1 OB-fold mutations unleash rampant telomere instability to initiate tumorigenesis
title_full Human Pot1 OB-fold mutations unleash rampant telomere instability to initiate tumorigenesis
title_fullStr Human Pot1 OB-fold mutations unleash rampant telomere instability to initiate tumorigenesis
title_full_unstemmed Human Pot1 OB-fold mutations unleash rampant telomere instability to initiate tumorigenesis
title_short Human Pot1 OB-fold mutations unleash rampant telomere instability to initiate tumorigenesis
title_sort human pot1 ob-fold mutations unleash rampant telomere instability to initiate tumorigenesis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5383532/
https://www.ncbi.nlm.nih.gov/pubmed/27869160
http://dx.doi.org/10.1038/onc.2016.405
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