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Overexpression of RPS27a contributes to enhanced chemoresistance of CML cells to imatinib by the transactivated STAT3

STAT3 plays a pivotal role in the hematopoietic system, which constitutively activated by BCR–ABL via JAK and Erk/MAP-kinase pathways. Phospho-STAT3 was overexpressed in imatinib-resistant CML patients as relative to imatinib responsive ones. By activation of the STAT3 pathway, BCR–ABL can promote c...

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Autores principales: Wang, Houcai, Xie, Bingqian, Kong, Yuanyuan, Tao, Yi, Yang, Guang, Gao, Minjie, Xu, Hongwei, Zhan, Fenghuang, Shi, Jumei, Zhang, Yiwen, Wu, Xiaosong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4951316/
https://www.ncbi.nlm.nih.gov/pubmed/26942564
http://dx.doi.org/10.18632/oncotarget.7888
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author Wang, Houcai
Xie, Bingqian
Kong, Yuanyuan
Tao, Yi
Yang, Guang
Gao, Minjie
Xu, Hongwei
Zhan, Fenghuang
Shi, Jumei
Zhang, Yiwen
Wu, Xiaosong
author_facet Wang, Houcai
Xie, Bingqian
Kong, Yuanyuan
Tao, Yi
Yang, Guang
Gao, Minjie
Xu, Hongwei
Zhan, Fenghuang
Shi, Jumei
Zhang, Yiwen
Wu, Xiaosong
author_sort Wang, Houcai
collection PubMed
description STAT3 plays a pivotal role in the hematopoietic system, which constitutively activated by BCR–ABL via JAK and Erk/MAP-kinase pathways. Phospho-STAT3 was overexpressed in imatinib-resistant CML patients as relative to imatinib responsive ones. By activation of the STAT3 pathway, BCR–ABL can promote cell cycling, and inhibit differentiation and apoptosis. Ribosomal protein S27a (RPS27a) performs extra-ribosomal functions besides imparting a role in ribosome biogenesis and post-translational modifications of proteins. RPS27a can promote proliferation, regulate cell cycle progression and inhibit apoptosis of leukemia cells. However, the relationship between STAT3 and RPS27a has not been reported. In this study, we detected a significantly increased expression of STAT3 and RPS27a in bone marrow samples from CML-AP/BP patients compared with those from CML-CP. In addition, we also demonstrated that it was a positive correlation between the level of STAT3 and that of RPS27a. Imatinib-resistant K562/G01 cells expressed significantly higher levels of STAT3 and RPS27a compared with those of K562 cells. RPS27a could be transactivated by p-STAT3 through the specific p-STAT3-binding site located nt −633 to −625 and −486 to −478 of the RPS27a gene promoter in a dose-dependent manner. The transactivated RPS27a could decrease the percentage of apoptotic CML cells induced by imatinib. And the effect of STAT3 overexpression could be counteracted by the p-STAT3 inhibitor WP1066 or RPS27a knockdown. These results suggest that drugs targeting STAT3/p-STAT3/RPS27a combining with TKI might represent a novel therapy strategy in patients with TKI-resistant CML.
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spelling pubmed-49513162016-07-21 Overexpression of RPS27a contributes to enhanced chemoresistance of CML cells to imatinib by the transactivated STAT3 Wang, Houcai Xie, Bingqian Kong, Yuanyuan Tao, Yi Yang, Guang Gao, Minjie Xu, Hongwei Zhan, Fenghuang Shi, Jumei Zhang, Yiwen Wu, Xiaosong Oncotarget Research Paper STAT3 plays a pivotal role in the hematopoietic system, which constitutively activated by BCR–ABL via JAK and Erk/MAP-kinase pathways. Phospho-STAT3 was overexpressed in imatinib-resistant CML patients as relative to imatinib responsive ones. By activation of the STAT3 pathway, BCR–ABL can promote cell cycling, and inhibit differentiation and apoptosis. Ribosomal protein S27a (RPS27a) performs extra-ribosomal functions besides imparting a role in ribosome biogenesis and post-translational modifications of proteins. RPS27a can promote proliferation, regulate cell cycle progression and inhibit apoptosis of leukemia cells. However, the relationship between STAT3 and RPS27a has not been reported. In this study, we detected a significantly increased expression of STAT3 and RPS27a in bone marrow samples from CML-AP/BP patients compared with those from CML-CP. In addition, we also demonstrated that it was a positive correlation between the level of STAT3 and that of RPS27a. Imatinib-resistant K562/G01 cells expressed significantly higher levels of STAT3 and RPS27a compared with those of K562 cells. RPS27a could be transactivated by p-STAT3 through the specific p-STAT3-binding site located nt −633 to −625 and −486 to −478 of the RPS27a gene promoter in a dose-dependent manner. The transactivated RPS27a could decrease the percentage of apoptotic CML cells induced by imatinib. And the effect of STAT3 overexpression could be counteracted by the p-STAT3 inhibitor WP1066 or RPS27a knockdown. These results suggest that drugs targeting STAT3/p-STAT3/RPS27a combining with TKI might represent a novel therapy strategy in patients with TKI-resistant CML. Impact Journals LLC 2016-03-03 /pmc/articles/PMC4951316/ /pubmed/26942564 http://dx.doi.org/10.18632/oncotarget.7888 Text en Copyright: © 2016 Wang et al. http://creativecommons.org/licenses/by/2.5/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Wang, Houcai
Xie, Bingqian
Kong, Yuanyuan
Tao, Yi
Yang, Guang
Gao, Minjie
Xu, Hongwei
Zhan, Fenghuang
Shi, Jumei
Zhang, Yiwen
Wu, Xiaosong
Overexpression of RPS27a contributes to enhanced chemoresistance of CML cells to imatinib by the transactivated STAT3
title Overexpression of RPS27a contributes to enhanced chemoresistance of CML cells to imatinib by the transactivated STAT3
title_full Overexpression of RPS27a contributes to enhanced chemoresistance of CML cells to imatinib by the transactivated STAT3
title_fullStr Overexpression of RPS27a contributes to enhanced chemoresistance of CML cells to imatinib by the transactivated STAT3
title_full_unstemmed Overexpression of RPS27a contributes to enhanced chemoresistance of CML cells to imatinib by the transactivated STAT3
title_short Overexpression of RPS27a contributes to enhanced chemoresistance of CML cells to imatinib by the transactivated STAT3
title_sort overexpression of rps27a contributes to enhanced chemoresistance of cml cells to imatinib by the transactivated stat3
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4951316/
https://www.ncbi.nlm.nih.gov/pubmed/26942564
http://dx.doi.org/10.18632/oncotarget.7888
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