CSNK2A1‐mediated phosphorylation of HMGA2 modulates cisplatin resistance in cervical cancer

The development of chemoresistance reduces the efficacy of anti‐cancer drugs. Cervical cancer is still one of the most common cancer types in developing countries. The oncogenic protein high mobility group AT‐hook 2 (HMGA2) is involved in the development and progression of tumors, although its role...

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Main Authors: Zhan Shi, Ding Wu, Hao Xu, Ju Yang, Xiaoqing Sun
Format: Article
Language:English
Published: Wiley 2021-08-01
Series:FEBS Open Bio
Subjects:
Online Access:https://doi.org/10.1002/2211-5463.13228
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spelling doaj-74e5cdb6712c4b10ac633fd576f1b1942021-08-03T09:37:46ZengWileyFEBS Open Bio2211-54632021-08-011182245225510.1002/2211-5463.13228CSNK2A1‐mediated phosphorylation of HMGA2 modulates cisplatin resistance in cervical cancerZhan Shi0Ding Wu1Hao Xu2Ju Yang3Xiaoqing Sun4Translational Medicine Center Shanghai General Hospital Shanghai Jiao Tong University School of Medicine Shanghai ChinaDepartment of Urology Jinling Hospital Nanjing Medical University Nanjing ChinaDepartment of Urology Huangshi Central Hospital Affiliated Hospital of Hubei Polytechnic University Edong Healthcare Group Huangshi ChinaThe Comprehensive Cancer Centre of Drum Tower Hospital Medical School of Nanjing University Clinical Cancer Institute of Nanjing University Nanjing ChinaDepartment of Urology Affiliated Hospital of Xuzhou Medical University Xuzhou ChinaThe development of chemoresistance reduces the efficacy of anti‐cancer drugs. Cervical cancer is still one of the most common cancer types in developing countries. The oncogenic protein high mobility group AT‐hook 2 (HMGA2) is involved in the development and progression of tumors, although its role in chemoresistance of cervical cancer remains unclear. Here, we report that HMGA2 is highly expressed in cervical cancer and negatively correlated with cisplatin‐induced cell death. We performed liquid chromatography‐tandem mass spectrometry to demonstrate that HMGA2 has high potential to interact with casein kinase II A1 (CSNK2A1). Moreover, we observed that HMGA2 co‐localizes with CSNK2A1 in the nucleus by immunofluorescence. Binding of HMGA2‐CSNK2A1 was detected by immunoprecipitation assays. In addition, we identified that cisplatin induces an interaction between CSNK2A1 and HMGA2, thereby promoting the phosphorylation of HMGA2. CX‐4945, a CSNK2A1 inhibitor, could inhibit the phosphorylation of HMGA2 and sensitize tumor cells to cisplatin. Our results reveal that CSNK2A1‐dependent HMGA2 phosphorylation may partially underlie cisplatin‐resistance in cervical cancer, suggesting that HMGA2 phosphorylation may have potential as a predicative biomarker and therapeutic target to improve chemotherapeutic efficacy.https://doi.org/10.1002/2211-5463.13228cervical cancerchemoresistancecisplatinCSNK2A1HMGA2
collection DOAJ
language English
format Article
sources DOAJ
author Zhan Shi
Ding Wu
Hao Xu
Ju Yang
Xiaoqing Sun
spellingShingle Zhan Shi
Ding Wu
Hao Xu
Ju Yang
Xiaoqing Sun
CSNK2A1‐mediated phosphorylation of HMGA2 modulates cisplatin resistance in cervical cancer
FEBS Open Bio
cervical cancer
chemoresistance
cisplatin
CSNK2A1
HMGA2
author_facet Zhan Shi
Ding Wu
Hao Xu
Ju Yang
Xiaoqing Sun
author_sort Zhan Shi
title CSNK2A1‐mediated phosphorylation of HMGA2 modulates cisplatin resistance in cervical cancer
title_short CSNK2A1‐mediated phosphorylation of HMGA2 modulates cisplatin resistance in cervical cancer
title_full CSNK2A1‐mediated phosphorylation of HMGA2 modulates cisplatin resistance in cervical cancer
title_fullStr CSNK2A1‐mediated phosphorylation of HMGA2 modulates cisplatin resistance in cervical cancer
title_full_unstemmed CSNK2A1‐mediated phosphorylation of HMGA2 modulates cisplatin resistance in cervical cancer
title_sort csnk2a1‐mediated phosphorylation of hmga2 modulates cisplatin resistance in cervical cancer
publisher Wiley
series FEBS Open Bio
issn 2211-5463
publishDate 2021-08-01
description The development of chemoresistance reduces the efficacy of anti‐cancer drugs. Cervical cancer is still one of the most common cancer types in developing countries. The oncogenic protein high mobility group AT‐hook 2 (HMGA2) is involved in the development and progression of tumors, although its role in chemoresistance of cervical cancer remains unclear. Here, we report that HMGA2 is highly expressed in cervical cancer and negatively correlated with cisplatin‐induced cell death. We performed liquid chromatography‐tandem mass spectrometry to demonstrate that HMGA2 has high potential to interact with casein kinase II A1 (CSNK2A1). Moreover, we observed that HMGA2 co‐localizes with CSNK2A1 in the nucleus by immunofluorescence. Binding of HMGA2‐CSNK2A1 was detected by immunoprecipitation assays. In addition, we identified that cisplatin induces an interaction between CSNK2A1 and HMGA2, thereby promoting the phosphorylation of HMGA2. CX‐4945, a CSNK2A1 inhibitor, could inhibit the phosphorylation of HMGA2 and sensitize tumor cells to cisplatin. Our results reveal that CSNK2A1‐dependent HMGA2 phosphorylation may partially underlie cisplatin‐resistance in cervical cancer, suggesting that HMGA2 phosphorylation may have potential as a predicative biomarker and therapeutic target to improve chemotherapeutic efficacy.
topic cervical cancer
chemoresistance
cisplatin
CSNK2A1
HMGA2
url https://doi.org/10.1002/2211-5463.13228
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AT dingwu csnk2a1mediatedphosphorylationofhmga2modulatescisplatinresistanceincervicalcancer
AT haoxu csnk2a1mediatedphosphorylationofhmga2modulatescisplatinresistanceincervicalcancer
AT juyang csnk2a1mediatedphosphorylationofhmga2modulatescisplatinresistanceincervicalcancer
AT xiaoqingsun csnk2a1mediatedphosphorylationofhmga2modulatescisplatinresistanceincervicalcancer
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