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14-3-3γ Prevents Centrosome Amplification and Neoplastic Progression

More than 80% of malignant tumors show centrosome amplification and clustering. Centrosome amplification results from aberrations in the centrosome duplication cycle, which is strictly coordinated with DNA-replication-cycle. However, the relationship between cell-cycle regulators and centrosome dupl...

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Autores principales: Mukhopadhyay, Amitabha, Sehgal, Lalit, Bose, Arunabha, Gulvady, Anushree, Senapati, Parijat, Thorat, Rahul, Basu, Srikanta, Bhatt, Khyati, Hosing, Amol S., Balyan, Renu, Borde, Lalit, Kundu, Tapas K., Dalal, Sorab N.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4890593/
https://www.ncbi.nlm.nih.gov/pubmed/27253419
http://dx.doi.org/10.1038/srep26580
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author Mukhopadhyay, Amitabha
Sehgal, Lalit
Bose, Arunabha
Gulvady, Anushree
Senapati, Parijat
Thorat, Rahul
Basu, Srikanta
Bhatt, Khyati
Hosing, Amol S.
Balyan, Renu
Borde, Lalit
Kundu, Tapas K.
Dalal, Sorab N.
author_facet Mukhopadhyay, Amitabha
Sehgal, Lalit
Bose, Arunabha
Gulvady, Anushree
Senapati, Parijat
Thorat, Rahul
Basu, Srikanta
Bhatt, Khyati
Hosing, Amol S.
Balyan, Renu
Borde, Lalit
Kundu, Tapas K.
Dalal, Sorab N.
author_sort Mukhopadhyay, Amitabha
collection PubMed
description More than 80% of malignant tumors show centrosome amplification and clustering. Centrosome amplification results from aberrations in the centrosome duplication cycle, which is strictly coordinated with DNA-replication-cycle. However, the relationship between cell-cycle regulators and centrosome duplicating factors is not well understood. This report demonstrates that 14-3-3γ localizes to the centrosome and 14-3-3γ loss leads to centrosome amplification. Loss of 14-3-3γ results in the phosphorylation of NPM1 at Thr-199, causing early centriole disjunction and centrosome hyper-duplication. The centrosome amplification led to aneuploidy and increased tumor formation in mice. Importantly, an increase in passage of the 14-3-3γ-knockdown cells led to an increase in the number of cells containing clustered centrosomes leading to the generation of pseudo-bipolar spindles. The increase in pseudo-bipolar spindles was reversed and an increase in the number of multi-polar spindles was observed upon expression of a constitutively active 14-3-3-binding-defective-mutant of cdc25C (S216A) in the 14-3-3γ knockdown cells. The increase in multi-polar spindle formation was associated with decreased cell viability and a decrease in tumor growth. Our findings uncover the molecular basis of regulation of centrosome duplication by 14-3-3γ and inhibition of tumor growth by premature activation of the mitotic program and the disruption of centrosome clustering.
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spelling pubmed-48905932016-06-09 14-3-3γ Prevents Centrosome Amplification and Neoplastic Progression Mukhopadhyay, Amitabha Sehgal, Lalit Bose, Arunabha Gulvady, Anushree Senapati, Parijat Thorat, Rahul Basu, Srikanta Bhatt, Khyati Hosing, Amol S. Balyan, Renu Borde, Lalit Kundu, Tapas K. Dalal, Sorab N. Sci Rep Article More than 80% of malignant tumors show centrosome amplification and clustering. Centrosome amplification results from aberrations in the centrosome duplication cycle, which is strictly coordinated with DNA-replication-cycle. However, the relationship between cell-cycle regulators and centrosome duplicating factors is not well understood. This report demonstrates that 14-3-3γ localizes to the centrosome and 14-3-3γ loss leads to centrosome amplification. Loss of 14-3-3γ results in the phosphorylation of NPM1 at Thr-199, causing early centriole disjunction and centrosome hyper-duplication. The centrosome amplification led to aneuploidy and increased tumor formation in mice. Importantly, an increase in passage of the 14-3-3γ-knockdown cells led to an increase in the number of cells containing clustered centrosomes leading to the generation of pseudo-bipolar spindles. The increase in pseudo-bipolar spindles was reversed and an increase in the number of multi-polar spindles was observed upon expression of a constitutively active 14-3-3-binding-defective-mutant of cdc25C (S216A) in the 14-3-3γ knockdown cells. The increase in multi-polar spindle formation was associated with decreased cell viability and a decrease in tumor growth. Our findings uncover the molecular basis of regulation of centrosome duplication by 14-3-3γ and inhibition of tumor growth by premature activation of the mitotic program and the disruption of centrosome clustering. Nature Publishing Group 2016-06-02 /pmc/articles/PMC4890593/ /pubmed/27253419 http://dx.doi.org/10.1038/srep26580 Text en Copyright © 2016, Macmillan Publishers Limited http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Mukhopadhyay, Amitabha
Sehgal, Lalit
Bose, Arunabha
Gulvady, Anushree
Senapati, Parijat
Thorat, Rahul
Basu, Srikanta
Bhatt, Khyati
Hosing, Amol S.
Balyan, Renu
Borde, Lalit
Kundu, Tapas K.
Dalal, Sorab N.
14-3-3γ Prevents Centrosome Amplification and Neoplastic Progression
title 14-3-3γ Prevents Centrosome Amplification and Neoplastic Progression
title_full 14-3-3γ Prevents Centrosome Amplification and Neoplastic Progression
title_fullStr 14-3-3γ Prevents Centrosome Amplification and Neoplastic Progression
title_full_unstemmed 14-3-3γ Prevents Centrosome Amplification and Neoplastic Progression
title_short 14-3-3γ Prevents Centrosome Amplification and Neoplastic Progression
title_sort 14-3-3γ prevents centrosome amplification and neoplastic progression
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4890593/
https://www.ncbi.nlm.nih.gov/pubmed/27253419
http://dx.doi.org/10.1038/srep26580
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