Actin polymerization negatively regulates p53 function by impairing its nuclear import in response to DNA damage.

Actin, one of the most evolutionarily conservative proteins in eukaryotes, is distributed both in the cytoplasm and the nucleus, and its dynamics plays important roles in numerous cellular processes. Previous evidence has shown that actin interacts with p53 and this interaction increases in the proc...

Full description

Bibliographic Details
Main Authors: Ling Wang, Min Wang, Shuyan Wang, Tianyang Qi, Lijing Guo, Jinjiao Li, Wenjing Qi, Khamal Kwesi Ampah, Xueqing Ba, Xianlu Zeng
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2013-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3615075?pdf=render
id doaj-3214bc9e24834fb39b569d529253f447
record_format Article
spelling doaj-3214bc9e24834fb39b569d529253f4472020-11-25T01:22:44ZengPublic Library of Science (PLoS)PLoS ONE1932-62032013-01-0184e6017910.1371/journal.pone.0060179Actin polymerization negatively regulates p53 function by impairing its nuclear import in response to DNA damage.Ling WangMin WangShuyan WangTianyang QiLijing GuoJinjiao LiWenjing QiKhamal Kwesi AmpahXueqing BaXianlu ZengActin, one of the most evolutionarily conservative proteins in eukaryotes, is distributed both in the cytoplasm and the nucleus, and its dynamics plays important roles in numerous cellular processes. Previous evidence has shown that actin interacts with p53 and this interaction increases in the process of p53 responding to DNA damage, but the physiological significance of their interaction remains elusive. Here, we show that DNA damage induces both actin polymerization and p53 accumulation. To further understand the implication of actin polymerization in p53 function, cells were treated with actin aggregation agent. We find that the protein level of p53 decrease. The change in p53 is a consequence of the polymeric actin anchoring p53 in the cytoplasm, thus impairing p53 nuclear import. Analysis of phosphorylation and ubiquitination of p53 reveals that actin polymerization promotes the p53 phosphorylation at Ser315 and reduces the stabilization of p53 by recruiting Aurora kinase A. Taken together, our results suggest that the actin polymerization serves as a negative modulator leading to the impairment of nuclear import and destabilization of p53. On the basis of our results, we propose that actin polymerization might be a factor participating in the process of orchestrating p53 function in response to DNA damage.http://europepmc.org/articles/PMC3615075?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Ling Wang
Min Wang
Shuyan Wang
Tianyang Qi
Lijing Guo
Jinjiao Li
Wenjing Qi
Khamal Kwesi Ampah
Xueqing Ba
Xianlu Zeng
spellingShingle Ling Wang
Min Wang
Shuyan Wang
Tianyang Qi
Lijing Guo
Jinjiao Li
Wenjing Qi
Khamal Kwesi Ampah
Xueqing Ba
Xianlu Zeng
Actin polymerization negatively regulates p53 function by impairing its nuclear import in response to DNA damage.
PLoS ONE
author_facet Ling Wang
Min Wang
Shuyan Wang
Tianyang Qi
Lijing Guo
Jinjiao Li
Wenjing Qi
Khamal Kwesi Ampah
Xueqing Ba
Xianlu Zeng
author_sort Ling Wang
title Actin polymerization negatively regulates p53 function by impairing its nuclear import in response to DNA damage.
title_short Actin polymerization negatively regulates p53 function by impairing its nuclear import in response to DNA damage.
title_full Actin polymerization negatively regulates p53 function by impairing its nuclear import in response to DNA damage.
title_fullStr Actin polymerization negatively regulates p53 function by impairing its nuclear import in response to DNA damage.
title_full_unstemmed Actin polymerization negatively regulates p53 function by impairing its nuclear import in response to DNA damage.
title_sort actin polymerization negatively regulates p53 function by impairing its nuclear import in response to dna damage.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2013-01-01
description Actin, one of the most evolutionarily conservative proteins in eukaryotes, is distributed both in the cytoplasm and the nucleus, and its dynamics plays important roles in numerous cellular processes. Previous evidence has shown that actin interacts with p53 and this interaction increases in the process of p53 responding to DNA damage, but the physiological significance of their interaction remains elusive. Here, we show that DNA damage induces both actin polymerization and p53 accumulation. To further understand the implication of actin polymerization in p53 function, cells were treated with actin aggregation agent. We find that the protein level of p53 decrease. The change in p53 is a consequence of the polymeric actin anchoring p53 in the cytoplasm, thus impairing p53 nuclear import. Analysis of phosphorylation and ubiquitination of p53 reveals that actin polymerization promotes the p53 phosphorylation at Ser315 and reduces the stabilization of p53 by recruiting Aurora kinase A. Taken together, our results suggest that the actin polymerization serves as a negative modulator leading to the impairment of nuclear import and destabilization of p53. On the basis of our results, we propose that actin polymerization might be a factor participating in the process of orchestrating p53 function in response to DNA damage.
url http://europepmc.org/articles/PMC3615075?pdf=render
work_keys_str_mv AT lingwang actinpolymerizationnegativelyregulatesp53functionbyimpairingitsnuclearimportinresponsetodnadamage
AT minwang actinpolymerizationnegativelyregulatesp53functionbyimpairingitsnuclearimportinresponsetodnadamage
AT shuyanwang actinpolymerizationnegativelyregulatesp53functionbyimpairingitsnuclearimportinresponsetodnadamage
AT tianyangqi actinpolymerizationnegativelyregulatesp53functionbyimpairingitsnuclearimportinresponsetodnadamage
AT lijingguo actinpolymerizationnegativelyregulatesp53functionbyimpairingitsnuclearimportinresponsetodnadamage
AT jinjiaoli actinpolymerizationnegativelyregulatesp53functionbyimpairingitsnuclearimportinresponsetodnadamage
AT wenjingqi actinpolymerizationnegativelyregulatesp53functionbyimpairingitsnuclearimportinresponsetodnadamage
AT khamalkwesiampah actinpolymerizationnegativelyregulatesp53functionbyimpairingitsnuclearimportinresponsetodnadamage
AT xueqingba actinpolymerizationnegativelyregulatesp53functionbyimpairingitsnuclearimportinresponsetodnadamage
AT xianluzeng actinpolymerizationnegativelyregulatesp53functionbyimpairingitsnuclearimportinresponsetodnadamage
_version_ 1725125743824863232