The role of NF-kB activation in lapatinib resistant in breast cancer cells

碩士 === 中國醫藥大學 === 癌症生物學研究所碩士班 === 100 === HER2/neu gene, overexpressed in approximately 30% of breast cancers, plays an important role in tumorigenesis of breast cancer, and is associated with increased disease recurrence and worse prognosis. Lapatinib, a dual EGFR/HER2 tyrosine kinase inhibitor, re...

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Main Authors: Meng-Chieh Yu, 游孟潔
Other Authors: 黃偉謙
Format: Others
Language:en_US
Published: 2012
Online Access:http://ndltd.ncl.edu.tw/handle/33306047182730688372
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spelling ndltd-TW-100CMCH56040032015-10-13T21:32:33Z http://ndltd.ncl.edu.tw/handle/33306047182730688372 The role of NF-kB activation in lapatinib resistant in breast cancer cells NF-kB 轉錄因子影響 Lapatinib 抗藥性形成之角色探討 Meng-Chieh Yu 游孟潔 碩士 中國醫藥大學 癌症生物學研究所碩士班 100 HER2/neu gene, overexpressed in approximately 30% of breast cancers, plays an important role in tumorigenesis of breast cancer, and is associated with increased disease recurrence and worse prognosis. Lapatinib, a dual EGFR/HER2 tyrosine kinase inhibitor, received FDA approval for advanced or metastatic breast cancers in combination with chemotherapy. However, the rapid recurrence and progression were frequently developed after several months of treatment with lapatinib, and the underlying molecular mechanisms of acquired resistance to lapatinib remain unclear. Activation of NF-kB transcription factor has been reported to confer chemoresistance and tumor progression through induction of anti-apoptotic and metastatic gene expressions. In this study, we observed that long-term treatment with lapatinib, but not other EGFR TKIs, specifically induces Ser536 phosphorylation and nuclear translocation of p65 through activation of Src/IKK signaling pathway in both HER2-positive and –negative breast cancers. IkBa as well as other target genes were induced by the lapatinib-activated NF-kB, but the newly synthesized IκBα did not negatively feedback to inhibit NF-kB due to phosphorylation at Y42 by Src. Our data further showed that lapatinib-treated breast cancer cells were more sensitive to NF-kB inhibition by p65 shRNA than their parental cells. Furthermore, targeting NF-kB activity by IKK inhibitors or proteasome inhibitors also can effectively suppress the viability of lapatinib-resistant HER2-positive breast cancer cells. These findings indicate that lapatinib treatment may render breast cancer cells addicted to oncogenic NF-kB activity, and targeting NF-kB may circumvent the acquired lapatinib resistance. The switch of oncogenic addiction to NF-kB by lapatinib was also found in triple-negative breast cancer (TNBC) cells, further suggesting the lapatinib-activated NF-kB as a potential and inducible Achilles'' heel of such breast cancer cells. Indeed, our data showed that treatment with lapatinib or targeting NF-kB by IKK inhibitors or proteasome inhibitors alone did not showed significant anti-tumor activity in TNBC cells. However, combination of lapatinib and proteasome inhibitors can obviously suppress the growth rate of TNBC cells both in vitro and in vivo. Taken together, our findings revealed that activation of NF-kB by lapatinib is mediated by Src/IKK signaling pathway but independent of HER2 inhibition and contributes to lapatinib resistance. Targeting NF-kB by proteasome inhibitors may be a promising therapeutic strategy for circumventing the lapatinib resistance in HER2-positive breast cancer cells as well as an effective treatment in combination with lapatinib for TNBC cells. 黃偉謙 2012 學位論文 ; thesis 77 en_US
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description 碩士 === 中國醫藥大學 === 癌症生物學研究所碩士班 === 100 === HER2/neu gene, overexpressed in approximately 30% of breast cancers, plays an important role in tumorigenesis of breast cancer, and is associated with increased disease recurrence and worse prognosis. Lapatinib, a dual EGFR/HER2 tyrosine kinase inhibitor, received FDA approval for advanced or metastatic breast cancers in combination with chemotherapy. However, the rapid recurrence and progression were frequently developed after several months of treatment with lapatinib, and the underlying molecular mechanisms of acquired resistance to lapatinib remain unclear. Activation of NF-kB transcription factor has been reported to confer chemoresistance and tumor progression through induction of anti-apoptotic and metastatic gene expressions. In this study, we observed that long-term treatment with lapatinib, but not other EGFR TKIs, specifically induces Ser536 phosphorylation and nuclear translocation of p65 through activation of Src/IKK signaling pathway in both HER2-positive and –negative breast cancers. IkBa as well as other target genes were induced by the lapatinib-activated NF-kB, but the newly synthesized IκBα did not negatively feedback to inhibit NF-kB due to phosphorylation at Y42 by Src. Our data further showed that lapatinib-treated breast cancer cells were more sensitive to NF-kB inhibition by p65 shRNA than their parental cells. Furthermore, targeting NF-kB activity by IKK inhibitors or proteasome inhibitors also can effectively suppress the viability of lapatinib-resistant HER2-positive breast cancer cells. These findings indicate that lapatinib treatment may render breast cancer cells addicted to oncogenic NF-kB activity, and targeting NF-kB may circumvent the acquired lapatinib resistance. The switch of oncogenic addiction to NF-kB by lapatinib was also found in triple-negative breast cancer (TNBC) cells, further suggesting the lapatinib-activated NF-kB as a potential and inducible Achilles'' heel of such breast cancer cells. Indeed, our data showed that treatment with lapatinib or targeting NF-kB by IKK inhibitors or proteasome inhibitors alone did not showed significant anti-tumor activity in TNBC cells. However, combination of lapatinib and proteasome inhibitors can obviously suppress the growth rate of TNBC cells both in vitro and in vivo. Taken together, our findings revealed that activation of NF-kB by lapatinib is mediated by Src/IKK signaling pathway but independent of HER2 inhibition and contributes to lapatinib resistance. Targeting NF-kB by proteasome inhibitors may be a promising therapeutic strategy for circumventing the lapatinib resistance in HER2-positive breast cancer cells as well as an effective treatment in combination with lapatinib for TNBC cells.
author2 黃偉謙
author_facet 黃偉謙
Meng-Chieh Yu
游孟潔
author Meng-Chieh Yu
游孟潔
spellingShingle Meng-Chieh Yu
游孟潔
The role of NF-kB activation in lapatinib resistant in breast cancer cells
author_sort Meng-Chieh Yu
title The role of NF-kB activation in lapatinib resistant in breast cancer cells
title_short The role of NF-kB activation in lapatinib resistant in breast cancer cells
title_full The role of NF-kB activation in lapatinib resistant in breast cancer cells
title_fullStr The role of NF-kB activation in lapatinib resistant in breast cancer cells
title_full_unstemmed The role of NF-kB activation in lapatinib resistant in breast cancer cells
title_sort role of nf-kb activation in lapatinib resistant in breast cancer cells
publishDate 2012
url http://ndltd.ncl.edu.tw/handle/33306047182730688372
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