Prognostic Values of Filamin-A Status for Topoisomerase II Poison Chemotherapy
<p>Filamin-A, also called Actin Binding Protein-280, is not only an essential component of the cytoskeleton networks, but also serves as the scaffold in various signaling networks. It has been shown that filamin-A facilitates DNA repair and filamin-A proficient cells are more resistant to ioni...
Main Author: | |
---|---|
Format: | Article |
Language: | English |
Published: |
Ivyspring International Publisher
2012-01-01
|
Series: | International Journal of Biological Sciences |
Online Access: | http://www.biolsci.org/v08p0442.htm |
id |
doaj-7e7c76ffe6ac4b8fb8c01c536a9858a7 |
---|---|
record_format |
Article |
spelling |
doaj-7e7c76ffe6ac4b8fb8c01c536a9858a72020-11-24T22:16:32ZengIvyspring International PublisherInternational Journal of Biological Sciences1449-22882012-01-0184442450Prognostic Values of Filamin-A Status for Topoisomerase II Poison ChemotherapyJingyin Yue, Shijie Lan, Changji Yuan, Zhiyuan Shen<p>Filamin-A, also called Actin Binding Protein-280, is not only an essential component of the cytoskeleton networks, but also serves as the scaffold in various signaling networks. It has been shown that filamin-A facilitates DNA repair and filamin-A proficient cells are more resistant to ionizing radiation, bleomycin, and cisplatin. In this study, we assessed the role of filamin-A in modulating cancer cell sensitivity to Topo II poisons, including etoposide and doxorubicin. Intriguingly, we found that cells with filamin-A expression are more sensitive to Topo II poisons than those with defective filamin-A, and filamin-A proficient xenograft melanomas have better response to etoposide treatment than the filamin-A deficient tumors. This is associated with more potent induction of DNA double strand breaks (DSBs) by Topo II poisons in filamin-A proficient cells than the deficient cells. Although the expression of filamin-A enables cells a slightly stronger capability to repair DSB, the net outcome is that filamin-A proficient cells bear more DSBs due to the significantly enhanced DSB induction by Topo II poisons in these cells. We further found that filamin-A proficient cells have increased drug influx and decreased drug efflux, suggesting that filamin-A modulates the intra-cellular drug kinetics of Topo II poisons to facilitate the generation of DSB after Topo II poison exposure. These data suggest a novel function of filamin-A in regulating the pharmacokinetics of Topo II poisons, and that the status of filamin-A may be used as a prognostic marker for Topo II poisons based cancer treatments.</p>http://www.biolsci.org/v08p0442.htm |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Jingyin Yue, Shijie Lan, Changji Yuan, Zhiyuan Shen |
spellingShingle |
Jingyin Yue, Shijie Lan, Changji Yuan, Zhiyuan Shen Prognostic Values of Filamin-A Status for Topoisomerase II Poison Chemotherapy International Journal of Biological Sciences |
author_facet |
Jingyin Yue, Shijie Lan, Changji Yuan, Zhiyuan Shen |
author_sort |
Jingyin Yue, Shijie Lan, Changji Yuan, Zhiyuan Shen |
title |
Prognostic Values of Filamin-A Status for Topoisomerase II Poison Chemotherapy |
title_short |
Prognostic Values of Filamin-A Status for Topoisomerase II Poison Chemotherapy |
title_full |
Prognostic Values of Filamin-A Status for Topoisomerase II Poison Chemotherapy |
title_fullStr |
Prognostic Values of Filamin-A Status for Topoisomerase II Poison Chemotherapy |
title_full_unstemmed |
Prognostic Values of Filamin-A Status for Topoisomerase II Poison Chemotherapy |
title_sort |
prognostic values of filamin-a status for topoisomerase ii poison chemotherapy |
publisher |
Ivyspring International Publisher |
series |
International Journal of Biological Sciences |
issn |
1449-2288 |
publishDate |
2012-01-01 |
description |
<p>Filamin-A, also called Actin Binding Protein-280, is not only an essential component of the cytoskeleton networks, but also serves as the scaffold in various signaling networks. It has been shown that filamin-A facilitates DNA repair and filamin-A proficient cells are more resistant to ionizing radiation, bleomycin, and cisplatin. In this study, we assessed the role of filamin-A in modulating cancer cell sensitivity to Topo II poisons, including etoposide and doxorubicin. Intriguingly, we found that cells with filamin-A expression are more sensitive to Topo II poisons than those with defective filamin-A, and filamin-A proficient xenograft melanomas have better response to etoposide treatment than the filamin-A deficient tumors. This is associated with more potent induction of DNA double strand breaks (DSBs) by Topo II poisons in filamin-A proficient cells than the deficient cells. Although the expression of filamin-A enables cells a slightly stronger capability to repair DSB, the net outcome is that filamin-A proficient cells bear more DSBs due to the significantly enhanced DSB induction by Topo II poisons in these cells. We further found that filamin-A proficient cells have increased drug influx and decreased drug efflux, suggesting that filamin-A modulates the intra-cellular drug kinetics of Topo II poisons to facilitate the generation of DSB after Topo II poison exposure. These data suggest a novel function of filamin-A in regulating the pharmacokinetics of Topo II poisons, and that the status of filamin-A may be used as a prognostic marker for Topo II poisons based cancer treatments.</p> |
url |
http://www.biolsci.org/v08p0442.htm |
work_keys_str_mv |
AT jingyinyueshijielanchangjiyuanzhiyuanshen prognosticvaluesoffilaminastatusfortopoisomeraseiipoisonchemotherapy |
_version_ |
1725789233846681600 |