Literature DB >> 26514342

Melatonin set out to ER stress signaling thwarts epithelial mesenchymal transition and peritoneal dissemination via calpain-mediated C/EBPβ and NFκB cleavage.

Sheng-Mao Wu1, Wan-Yu Lin2, Chin-Chang Shen3, Hung-Chuan Pan4,5, Wang Keh-Bin6, Yi-Ching Chen6, Yee-Jee Jan7, De-Wei Lai1, Shu-Ching Tang1, Hsing-Ru Tien1, Chien-Shan Chiu1, Tsung-Chih Tsai8, Yi-Liang Lai9, Meei-Ling Sheu1,10,11.   

Abstract

Peritoneal dissemination of tumor has high mortality and is associated with the loss of epithelial features, acquisition of motile mesenchymal morphology characteristics, and invasive properties by tumor cells. Melatonin is an endogenously produced molecule in all plant species that is known to exert antitumor activity, but to date, its underlying mechanisms and antiperitoneal metastasis efficacy is not well defined. This study determined the antiperitoneal dissemination potential of melatonin in vivo and assessed its association with the inhibition of epithelial-to-mesenchymal transition (EMT) signaling mechanism by endoplasmic reticulum (ER) stress, which may be a major molecular mechanism of melatonin against cancer. The results demonstrate that melatonin inhibited peritoneal metastasis in vivo and activated ER stress in Cignal ERSE Reporter Assay, organelle structure in transmission electron microscopy images, calpain activity, and protein biomarkers like p-elf2α. Moreover, the overexpression of transcription factor C/EBPβ in gastric cancer interacted with NFκB and further regulates COX-2 expression. These were dissociated and downregulated by melatonin, as proven by immunofluorescence imaging, immunoprecipitation, EMSA, and ChIP assay. Melatonin or gene silencing of C/EBPβ decreased the EMT protein markers (E-cadherin, Snail, and Slug) and Wnt/beta-catenin activity by Topflash activity, and increased ER stress markers. In an animal study, the results of melatonin therapy were consistent with those of in vitro findings and attenuated systemic proangiogenesis factor production. In conclusion, C/EBPβ and NFκB inhibition by melatonin may impede both gastric tumor growth and peritoneal dissemination by inducing ER stress and inhibiting EMT.
© 2015 John Wiley & Sons A/S. Published by John Wiley & Sons Ltd.

Entities:  

Keywords:  C/EBPβ; calpain; endoplasmic reticulum stress; epithelial-to-mesenchymal transition; melatonin; peritoneal dissemination

Mesh:

Substances:

Year:  2015        PMID: 26514342     DOI: 10.1111/jpi.12295

Source DB:  PubMed          Journal:  J Pineal Res        ISSN: 0742-3098            Impact factor:   13.007


  26 in total

1.  Calpain 1 regulates TGF-β1-induced epithelial-mesenchymal transition in human lung epithelial cells via PI3K/Akt signaling pathway.

Authors:  Wei-Jun Tan; Qiu-Yue Tan; Ting Wang; Min Lian; Li Zhang; Zhen-Shun Cheng
Journal:  Am J Transl Res       Date:  2017-03-15       Impact factor: 4.060

Review 2.  Melatonin and mitochondrial function during ischemia/reperfusion injury.

Authors:  Zhiqiang Ma; Zhenlong Xin; Wencheng Di; Xiaolong Yan; Xiaofei Li; Russel J Reiter; Yang Yang
Journal:  Cell Mol Life Sci       Date:  2017-08-09       Impact factor: 9.261

3.  Targeting histone deacetylase-3 blocked epithelial-mesenchymal plasticity and metastatic dissemination in gastric cancer.

Authors:  Sheng-Mao Wu; Yee-Jee Jan; Shih-Chuan Tsai; Hung-Chuan Pan; Chin-Chang Shen; Cheng-Ning Yang; Shu-Hua Lee; Shing-Hwa Liu; Li-Wei Shen; Chien-Shan Chiu; Jack L Arbiser; Menghsiao Meng; Meei-Ling Sheu
Journal:  Cell Biol Toxicol       Date:  2022-01-01       Impact factor: 6.691

4.  Whole-exome sequencing to identify somatic mutations in peritoneal metastatic gastric adenocarcinoma: A preliminary study.

Authors:  Hao Liu; Fengping Li; Yu Zhu; Tingting Li; Haipeng Huang; Tian Lin; Yanfeng Hu; Xiaolong Qi; Jiang Yu; Guoxin Li
Journal:  Oncotarget       Date:  2016-07-12

5.  Lactacystin-Induced Model of Hypertension in Rats: Effects of Melatonin and Captopril.

Authors:  Fedor Simko; Olga Pechanova; Kristina Repova; Silvia Aziriova; Kristina Krajcirovicova; Peter Celec; Lubomira Tothova; Stanislava Vrankova; Lucia Balazova; Stefan Zorad; Michaela Adamcova
Journal:  Int J Mol Sci       Date:  2017-07-25       Impact factor: 5.923

Review 6.  Melatonin for the prevention and treatment of cancer.

Authors:  Ya Li; Sha Li; Yue Zhou; Xiao Meng; Jiao-Jiao Zhang; Dong-Ping Xu; Hua-Bin Li
Journal:  Oncotarget       Date:  2017-06-13

Review 7.  Dietary Sources and Bioactivities of Melatonin.

Authors:  Xiao Meng; Ya Li; Sha Li; Yue Zhou; Ren-You Gan; Dong-Ping Xu; Hua-Bin Li
Journal:  Nutrients       Date:  2017-04-07       Impact factor: 5.717

Review 8.  Melatonin, a Full Service Anti-Cancer Agent: Inhibition of Initiation, Progression and Metastasis.

Authors:  Russel J Reiter; Sergio A Rosales-Corral; Dun-Xian Tan; Dario Acuna-Castroviejo; Lilan Qin; Shun-Fa Yang; Kexin Xu
Journal:  Int J Mol Sci       Date:  2017-04-17       Impact factor: 5.923

9.  Evaluation of cell death pathways initiated by antitumor drugs melatonin and valproic acid in bladder cancer cells.

Authors:  Siwei Liu; Bilin Liang; Huiting Jia; Yuhan Jiao; Zhongqiu Pang; Yongye Huang
Journal:  FEBS Open Bio       Date:  2017-04-27       Impact factor: 2.693

10.  Naa10p and IKKα interaction regulates EMT in oral squamous cell carcinoma via TGF-β1/Smad pathway.

Authors:  Sai Lv; Ting Luo; Yongyong Yang; Yuqing Li; Jie Yang; Jiang Xu; Jun Zheng; Yan Zeng
Journal:  J Cell Mol Med       Date:  2021-05-31       Impact factor: 5.310

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