Literature DB >> 28164444

Proteomic analysis of cell cycle arrest and differentiation induction caused by ATPR, a derivative of all-trans retinoic acid, in human gastric cancer SGC-7901 cells.

Quan Xia1, Yingli Zhao2, Jiali Wang1, Wenhao Qiao1, Dongling Zhang1, Hao Yin3, Dujuan Xu2, Feihu Chen1.   

Abstract

PURPOSE: 4-amino-2-trifluoromethyl-phenyl retinate (ATPR) was reported to potentially inhibit proliferation and induce differentiation activity in some tumor cells. In this study, a proteomics approach was used to investigate the possible mechanism by screening the differentially expressed protein profiles of SGC-7901 cells before and after ATPR-treatment in vitro. EXPERIMENTAL
DESIGN: Peptides digested from the total cellular proteins were analyzed by reverse phase LC-MS/MS followed by a label-free quantification analysis. The SEQUEST search engine was used to identify proteins and bioinformatics resources were used to investigate the involved pathways for the differentially expressed proteins.
RESULTS: Thirteen down-regulated proteins were identified in the ATPR-treated group. Bioinformatics analysis showed that the effects of ATPR on 14-3-3ε might potentially involve the PI3K-AKT-FOXO pathway and P27Kip1 expression. Western blot and RT-PCR analysis showed that ATPR could inhibit AKT phosphorylation, up-regulate the expression of FOXO1A and P27Kip1 at both the protein and mRNA levels, and down-regulate the cytoplasmic expression of cyclin E and CDK2. ATPR-induced G0/G1 phase arrest and differentiation can be ablated if the P27kip1 gene is silenced with sequence-specific siRNA or in 14-3-3ε overexpression of SGC-7901 cells. CONCLUSION AND CLINICAL RELEVANCE: ATPR might cause cell cycle arrest and differentiation in SGC-7901 cells by simultaneously inhibiting the phosphorylation of AKT and down-regulating 14-3-3ε. This change would then enhance the inhibition of cyclin E/CDK2 by up-regulating FOXO1A and P27Kip1. Our findings could be of value for finding new drug targets and for developing more effective differentiation inducer.
© 2017 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim.

Entities:  

Keywords:  ATPR; Cell cycle arrest and differentiation; PI3K-AKT-FOXO-P27kip1 pathway; Proteomics analysis; SGC-7901 cells

Mesh:

Substances:

Year:  2017        PMID: 28164444     DOI: 10.1002/prca.201600099

Source DB:  PubMed          Journal:  Proteomics Clin Appl        ISSN: 1862-8346            Impact factor:   3.494


  7 in total

1.  Targeted delivery of HES5-siRNA with novel polypeptide-modified nanoparticles for hepatocellular carcinoma therapy.

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3.  ATPR-induced G0 /G1 phase arrest in gastric cancer cells by regulating the binding of 14-3-3ε and filamin A.

Authors:  Yingli Zhao; Xing Fang; Hui Fang; Yubin Feng; Feihu Chen; Quan Xia
Journal:  Cancer Med       Date:  2018-06-04       Impact factor: 4.452

Review 4.  Efficiency of All-Trans Retinoic Acid on Gastric Cancer: A Narrative Literature Review.

Authors:  Damien Bouriez; Julie Giraud; Caroline Gronnier; Christine Varon
Journal:  Int J Mol Sci       Date:  2018-10-29       Impact factor: 5.923

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Authors:  Yubin Feng; Xiaoxiao Hua; Ruowen Niu; Yan Du; Congjian Shi; Renpeng Zhou; Fei-Hu Chen
Journal:  Biol Res       Date:  2019-05-03       Impact factor: 5.612

6.  ATPR triggers acute myeloid leukaemia cells differentiation and cycle arrest via the RARα/LDHB/ERK-glycolysis signalling axis.

Authors:  Yan Du; Mei-Ju Zhang; Lan-Lan Li; Xiao-Lin Xu; Hao Chen; Yu-Bin Feng; Yan Li; Xiao-Qin Peng; Fei-Hu Chen
Journal:  J Cell Mol Med       Date:  2020-05-11       Impact factor: 5.310

7.  LncRNA NR-104098 Inhibits AML Proliferation and Induces Differentiation Through Repressing EZH2 Transcription by Interacting With E2F1.

Authors:  Yubin Feng; Shuang Hu; Lanlan Li; Shengpeng Zhang; Jikang Liu; Xiaoling Xu; Meiju Zhang; Tianxi Du; Yan Du; Xiaoqing Peng; Feihu Chen
Journal:  Front Cell Dev Biol       Date:  2020-03-26
  7 in total

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