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...

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Main Author: Jingyin Yue, Shijie Lan, Changji Yuan, Zhiyuan Shen
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
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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
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