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PPP2R2A prostate cancer haploinsufficiency is associated with worse prognosis and a high vulnerability to B55α/PP2A reconstitution that triggers centrosome destabilization

The PPP2R2A gene encodes the B55α regulatory subunit of PP2A. Here, we report that PPP2R2A is hemizygously lost in ~42% of prostate adenocarcinomas, correlating with reduced expression, poorer prognosis, and an increased incidence of hemizygous loss (>75%) in metastatic disease. Of note, PPP2R2A...

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Autores principales: Zhao, Ziran, Kurimchak, Alison, Nikonova, Anna S., Feiser, Felicity, Wasserman, Jason S., Fowle, Holly, Varughese, Tinsa, Connors, Megan, Johnson, Katherine, Makhov, Petr, Lindskog, Cecilia, Kolenko, Vladimir M., Golemis, Erica A., Duncan, James S., Graña, Xavier
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6904742/
https://www.ncbi.nlm.nih.gov/pubmed/31822657
http://dx.doi.org/10.1038/s41389-019-0180-9
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author Zhao, Ziran
Kurimchak, Alison
Nikonova, Anna S.
Feiser, Felicity
Wasserman, Jason S.
Fowle, Holly
Varughese, Tinsa
Connors, Megan
Johnson, Katherine
Makhov, Petr
Lindskog, Cecilia
Kolenko, Vladimir M.
Golemis, Erica A.
Duncan, James S.
Graña, Xavier
author_facet Zhao, Ziran
Kurimchak, Alison
Nikonova, Anna S.
Feiser, Felicity
Wasserman, Jason S.
Fowle, Holly
Varughese, Tinsa
Connors, Megan
Johnson, Katherine
Makhov, Petr
Lindskog, Cecilia
Kolenko, Vladimir M.
Golemis, Erica A.
Duncan, James S.
Graña, Xavier
author_sort Zhao, Ziran
collection PubMed
description The PPP2R2A gene encodes the B55α regulatory subunit of PP2A. Here, we report that PPP2R2A is hemizygously lost in ~42% of prostate adenocarcinomas, correlating with reduced expression, poorer prognosis, and an increased incidence of hemizygous loss (>75%) in metastatic disease. Of note, PPP2R2A homozygous loss is less common (5%) and not increased at later tumor stages. Reduced expression of B55α is also seen in prostate tumor tissue and cell lines. Consistent with the possibility that complete loss of PPP2R2A is detrimental in prostate tumors, PPP2R2A deletion in cells with reduced but present B55α reduces cell proliferation by slowing progression through the cell cycle. Remarkably, B55α-low cells also appear addicted to lower B55α expression, as even moderate increases in B55α expression are toxic. Reconstitution of B55α expression in prostate cancer (PCa) cell lines with low B55α expression reduces proliferation, inhibits transformation and blocks xenograft tumorigenicity. Mechanistically, we show B55α reconstitution reduces phosphorylation of proteins essential for centrosomal maintenance, and induces centrosome collapse and chromosome segregation failure; a first reported link between B55α/PP2A and the vertebrate centrosome. These effects are dependent on a prolonged metaphase/anaphase checkpoint and are lethal to PCa cells addicted to low levels of B55α. Thus, we propose the reduction in B55α levels associated with hemizygous loss is necessary for centrosomal integrity in PCa cells, leading to selective lethality of B55α reconstitution. Such a vulnerability could be targeted therapeutically in the large pool of patients with hemizygous PPP2R2A deletions, using pharmacologic approaches that enhance PP2A/B55α activity.
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spelling pubmed-69047422019-12-11 PPP2R2A prostate cancer haploinsufficiency is associated with worse prognosis and a high vulnerability to B55α/PP2A reconstitution that triggers centrosome destabilization Zhao, Ziran Kurimchak, Alison Nikonova, Anna S. Feiser, Felicity Wasserman, Jason S. Fowle, Holly Varughese, Tinsa Connors, Megan Johnson, Katherine Makhov, Petr Lindskog, Cecilia Kolenko, Vladimir M. Golemis, Erica A. Duncan, James S. Graña, Xavier Oncogenesis Article The PPP2R2A gene encodes the B55α regulatory subunit of PP2A. Here, we report that PPP2R2A is hemizygously lost in ~42% of prostate adenocarcinomas, correlating with reduced expression, poorer prognosis, and an increased incidence of hemizygous loss (>75%) in metastatic disease. Of note, PPP2R2A homozygous loss is less common (5%) and not increased at later tumor stages. Reduced expression of B55α is also seen in prostate tumor tissue and cell lines. Consistent with the possibility that complete loss of PPP2R2A is detrimental in prostate tumors, PPP2R2A deletion in cells with reduced but present B55α reduces cell proliferation by slowing progression through the cell cycle. Remarkably, B55α-low cells also appear addicted to lower B55α expression, as even moderate increases in B55α expression are toxic. Reconstitution of B55α expression in prostate cancer (PCa) cell lines with low B55α expression reduces proliferation, inhibits transformation and blocks xenograft tumorigenicity. Mechanistically, we show B55α reconstitution reduces phosphorylation of proteins essential for centrosomal maintenance, and induces centrosome collapse and chromosome segregation failure; a first reported link between B55α/PP2A and the vertebrate centrosome. These effects are dependent on a prolonged metaphase/anaphase checkpoint and are lethal to PCa cells addicted to low levels of B55α. Thus, we propose the reduction in B55α levels associated with hemizygous loss is necessary for centrosomal integrity in PCa cells, leading to selective lethality of B55α reconstitution. Such a vulnerability could be targeted therapeutically in the large pool of patients with hemizygous PPP2R2A deletions, using pharmacologic approaches that enhance PP2A/B55α activity. Nature Publishing Group UK 2019-12-10 /pmc/articles/PMC6904742/ /pubmed/31822657 http://dx.doi.org/10.1038/s41389-019-0180-9 Text en © The Author(s) 2019 Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Article
Zhao, Ziran
Kurimchak, Alison
Nikonova, Anna S.
Feiser, Felicity
Wasserman, Jason S.
Fowle, Holly
Varughese, Tinsa
Connors, Megan
Johnson, Katherine
Makhov, Petr
Lindskog, Cecilia
Kolenko, Vladimir M.
Golemis, Erica A.
Duncan, James S.
Graña, Xavier
PPP2R2A prostate cancer haploinsufficiency is associated with worse prognosis and a high vulnerability to B55α/PP2A reconstitution that triggers centrosome destabilization
title PPP2R2A prostate cancer haploinsufficiency is associated with worse prognosis and a high vulnerability to B55α/PP2A reconstitution that triggers centrosome destabilization
title_full PPP2R2A prostate cancer haploinsufficiency is associated with worse prognosis and a high vulnerability to B55α/PP2A reconstitution that triggers centrosome destabilization
title_fullStr PPP2R2A prostate cancer haploinsufficiency is associated with worse prognosis and a high vulnerability to B55α/PP2A reconstitution that triggers centrosome destabilization
title_full_unstemmed PPP2R2A prostate cancer haploinsufficiency is associated with worse prognosis and a high vulnerability to B55α/PP2A reconstitution that triggers centrosome destabilization
title_short PPP2R2A prostate cancer haploinsufficiency is associated with worse prognosis and a high vulnerability to B55α/PP2A reconstitution that triggers centrosome destabilization
title_sort ppp2r2a prostate cancer haploinsufficiency is associated with worse prognosis and a high vulnerability to b55α/pp2a reconstitution that triggers centrosome destabilization
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6904742/
https://www.ncbi.nlm.nih.gov/pubmed/31822657
http://dx.doi.org/10.1038/s41389-019-0180-9
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