Characterization of growth suppressive functions of a splice variant of cyclin D2.

We have recently cloned a novel splice variant of cyclin D2 termed as cycD2SV. CycD2SV overexpression in several immortalized cell lines led to formation of ubiquitinated protein aggregates accompanied by a significant decrease in cell proliferation. Based on immuno co-localization and ultrastructur...

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Main Authors: Karim Wafa, Jessica MacLean, Feixiong Zhang, Kishore B S Pasumarthi
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2013-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3542336?pdf=render
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spelling doaj-62a6f8865c5c48648bdacd944b79942c2020-11-25T02:00:26ZengPublic Library of Science (PLoS)PLoS ONE1932-62032013-01-0181e5350310.1371/journal.pone.0053503Characterization of growth suppressive functions of a splice variant of cyclin D2.Karim WafaJessica MacLeanFeixiong ZhangKishore B S PasumarthiWe have recently cloned a novel splice variant of cyclin D2 termed as cycD2SV. CycD2SV overexpression in several immortalized cell lines led to formation of ubiquitinated protein aggregates accompanied by a significant decrease in cell proliferation. Based on immuno co-localization and ultrastructural analysis experiments, cycD2SV protein aggregates were frequently found in various subcellular compartments such as endosomes, autophagosomes, lysosomes and the microtubule organizing centre. Secondary structure analysis revealed that the amino terminal α-helix in cycD2SV is not tightly packed with the cyclin box suggesting a misfolded conformation compared to other cyclins. Deletion analysis suggests that 1-53 amino acid region of cycD2SV may be required for protein aggregation and 54-136 amino acid region may mediate cell cycle inhibition. Based on co-immunoprecipitation experiments, we have shown that cycD2SV binds to cycD2 as well as CDK4. In addition, gene expression analysis demonstrated an upregulation in GADD45α and dynamin 2 mRNA levels in cycD2SV overexpressing cells. These two proteins are known to play critical roles in the DNA damage response and apoptosis pathways. TUNEL experiments were negative for apoptosis, however, cycD2SV expressing cells were more sensitive to cell death induced by external stressors such as trypsinization. Collectively our results suggest that cycD2SV mediates cell cycle inhibition by sequestering endogenous cell cycle proteins, such as cycD2 and CDK4, and possibly targeting them for ubiquitin mediated protein degradation.http://europepmc.org/articles/PMC3542336?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Karim Wafa
Jessica MacLean
Feixiong Zhang
Kishore B S Pasumarthi
spellingShingle Karim Wafa
Jessica MacLean
Feixiong Zhang
Kishore B S Pasumarthi
Characterization of growth suppressive functions of a splice variant of cyclin D2.
PLoS ONE
author_facet Karim Wafa
Jessica MacLean
Feixiong Zhang
Kishore B S Pasumarthi
author_sort Karim Wafa
title Characterization of growth suppressive functions of a splice variant of cyclin D2.
title_short Characterization of growth suppressive functions of a splice variant of cyclin D2.
title_full Characterization of growth suppressive functions of a splice variant of cyclin D2.
title_fullStr Characterization of growth suppressive functions of a splice variant of cyclin D2.
title_full_unstemmed Characterization of growth suppressive functions of a splice variant of cyclin D2.
title_sort characterization of growth suppressive functions of a splice variant of cyclin d2.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2013-01-01
description We have recently cloned a novel splice variant of cyclin D2 termed as cycD2SV. CycD2SV overexpression in several immortalized cell lines led to formation of ubiquitinated protein aggregates accompanied by a significant decrease in cell proliferation. Based on immuno co-localization and ultrastructural analysis experiments, cycD2SV protein aggregates were frequently found in various subcellular compartments such as endosomes, autophagosomes, lysosomes and the microtubule organizing centre. Secondary structure analysis revealed that the amino terminal α-helix in cycD2SV is not tightly packed with the cyclin box suggesting a misfolded conformation compared to other cyclins. Deletion analysis suggests that 1-53 amino acid region of cycD2SV may be required for protein aggregation and 54-136 amino acid region may mediate cell cycle inhibition. Based on co-immunoprecipitation experiments, we have shown that cycD2SV binds to cycD2 as well as CDK4. In addition, gene expression analysis demonstrated an upregulation in GADD45α and dynamin 2 mRNA levels in cycD2SV overexpressing cells. These two proteins are known to play critical roles in the DNA damage response and apoptosis pathways. TUNEL experiments were negative for apoptosis, however, cycD2SV expressing cells were more sensitive to cell death induced by external stressors such as trypsinization. Collectively our results suggest that cycD2SV mediates cell cycle inhibition by sequestering endogenous cell cycle proteins, such as cycD2 and CDK4, and possibly targeting them for ubiquitin mediated protein degradation.
url http://europepmc.org/articles/PMC3542336?pdf=render
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