Literature DB >> 25023961

Eukaryotic elongation factor-2 kinase (eEF2K): a potential therapeutic target in cancer.

L L Fu1, T Xie, S Y Zhang, B Liu.   

Abstract

Eukaryotic elongation factor-2 kinase (eEF2K), encoded by the EEF2K gene, is well-known to be a Ca(2+)/calmodulin (CaM)-dependent kinase which can negatively modulate protein synthesis. It is highly conserved among eukaryotes from mammals to invertebrates, of which human and mouse may have 99 % overall amino acid identity. This kinase can phosphorylate eukaryotic elongation factor-2 (eEF2) or undergo the process of autophosphorylation at multiple sites to inhibit its function in translation elongation. Due to the fact that regulation of eEF2 by eEF2K is an evolutionarily conserved mechanism, eEF2K activity may confer tumor cell adaption to metabolic stress under acute nutrient depletion, and the high expressed level of eEF2K has been found in several types of malignancies. eEF2K may modulate the expression of some apoptotic proteins such as XIAP, c-FLIPL, Bcl-XL, PI3KCI and p70(S6K) to inhibit apoptotic process in cancer. On the other hand, it plays a regulatory role in autophagy involved in mTORC1, AMPK and Atg8, thereby promoting cancer cell survival. Additionally, eEF2K may play a crucial role in the crosstalk between apoptosis and autophagy in cancer. Collectively, these findings have led to the conclusions that eEF2K may contribute to carcinogenesis, and thus being utilized as a potential target for future cancer therapy.

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Year:  2014        PMID: 25023961     DOI: 10.1007/s10495-014-1019-7

Source DB:  PubMed          Journal:  Apoptosis        ISSN: 1360-8185            Impact factor:   4.677


  13 in total

1.  Suppression of eEF-2K-mediated autophagy enhances the cytotoxicity of raddeanin A against human breast cancer cells in vitro.

Authors:  Yi-di Guan; Shi-Long Jiang; Pian Yu; Mei Wen; Yi Zhang; Song-Shu Xiao; Xiao-Jun Xu; Yan Cheng
Journal:  Acta Pharmacol Sin       Date:  2017-12-14       Impact factor: 6.150

2.  MicroRNA-877 acts as a tumor suppressor by directly targeting eEF2K in renal cell carcinoma.

Authors:  Qianqian Shi; Xianlin Xu; Qing Liu; Fengbao Luo; Jian Shi; Xiaozhou He
Journal:  Oncol Lett       Date:  2015-12-31       Impact factor: 2.967

3.  Fluoxetine induces autophagic cell death via eEF2K-AMPK-mTOR-ULK complex axis in triple negative breast cancer.

Authors:  Dejuan Sun; Lingjuan Zhu; Yuqian Zhao; Yingnan Jiang; Lixia Chen; Yang Yu; Liang Ouyang
Journal:  Cell Prolif       Date:  2017-11-01       Impact factor: 6.831

Review 4.  Untangling knots between autophagic targets and candidate drugs, in cancer therapy.

Authors:  Tao Xie; Si-Jia Li; Ming-Rui Guo; Yue Wu; Hang-Yu Wang; Ke Zhang; Xue Zhang; Liang Ouyang; Jie Liu
Journal:  Cell Prolif       Date:  2015-02-04       Impact factor: 6.831

Review 5.  UNC51-like kinase 1, autophagic regulator and cancer therapeutic target.

Authors:  Y Chen; J He; M Tian; S-Y Zhang; M-R Guo; R Kasimu; J-H Wang; L Ouyang
Journal:  Cell Prolif       Date:  2014-10-20       Impact factor: 6.831

6.  Discovery of New Inhibitors of eEF2K from Traditional Chinese Medicine Based on In Silico Screening and In Vitro Experimental Validation.

Authors:  Qinghua Fu; Xiaomei Liu; Yan Li; Peng Wang; Tian Wu; Haihan Xiao; Yameng Zhao; Qichao Liao; Ziyi Song
Journal:  Molecules       Date:  2022-07-30       Impact factor: 4.927

7.  Identification of ULK1 as a novel biomarker involved in miR-4487 and miR-595 regulation in neuroblastoma SH-SY5Y cell autophagy.

Authors:  Yi Chen; Shuya Wang; Lan Zhang; Tao Xie; Sicheng Song; Jian Huang; Yonghui Zhang; Liang Ouyang; Bo Liu
Journal:  Sci Rep       Date:  2015-07-17       Impact factor: 4.379

8.  Coordination of changes in expression and phosphorylation of eukaryotic elongation factor 2 (eEF2) and eEF2 kinase in hypertrophied cardiomyocytes.

Authors:  Satoshi Kameshima; Muneyoshi Okada; Shiro Ikeda; Yuki Watanabe; Hideyuki Yamawaki
Journal:  Biochem Biophys Rep       Date:  2016-06-28

9.  Pharmacological eEF2K activation promotes cell death and inhibits cancer progression.

Authors:  Aude De Gassart; Olivier Demaria; Rébecca Panes; Léa Zaffalon; Alexey G Ryazanov; Michel Gilliet; Fabio Martinon
Journal:  EMBO Rep       Date:  2016-08-29       Impact factor: 8.807

10.  Calyxin Y sensitizes cisplatin-sensitive and resistant hepatocellular carcinoma cells to cisplatin through apoptotic and autophagic cell death via SCF βTrCP-mediated eEF2K degradation.

Authors:  Chao Zhang; Jian-Li Lei; Hao Zhang; Yuan-Zheng Xia; Pei Yu; Lei Yang; Ling-Yi Kong
Journal:  Oncotarget       Date:  2017-08-03
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