Phospho-ΔNp63α/SREBF1 protein interactions Bridging cell metabolism and cisplatin chemoresistance

被引:25
作者
Huang, Yiping [1 ]
Bell, Lauren N. [3 ]
Okamura, Jun [2 ]
Kim, Myoung Soo [2 ]
Mohney, Robert P. [3 ]
Guerrero-Preston, Rafael [2 ]
Ratovitski, Edward A. [1 ,2 ]
机构
[1] Johns Hopkins Univ, Sch Med, Dept Dermatol, Baltimore, MD 21205 USA
[2] Johns Hopkins Univ, Sch Med, Dept Otolaryngol Head & Neck Surg, Baltimore, MD 21205 USA
[3] Metabolon Inc, Durham, NC USA
关键词
p53; p63; cisplatin; squamous cell carcinomas; protein interactions; metabolomics; FATTY-ACID SYNTHASE; TUMOR-SUPPRESSOR P53; BREAST-CANCER CELLS; DNA-DAMAGE; LIPID-METABOLISM; MITOCHONDRIAL RESPIRATION; P53-INDUCIBLE REGULATOR; DEPENDENT APOPTOSIS; INTRINSIC PATHWAY; DRUG-RESISTANCE;
D O I
10.4161/cc.22022
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Tumor protein (TP)-p53 family members (TP 63, TP 63 and TP 73) are guardians of the genome and key players in orchestrating the cellular response to cisplatin treatment. Cisplatin-induced phosphorylation of Delta Np63 alpha was shown to have a role in regulating intracellular Delta Np63 alpha protein levels. We previously found that squamous cell carcinoma (SCC) cells exposed to cisplatin displayed the ATM-dependent phosphorylation of Delta Np63 alpha (p-Delta Np63 alpha), which is critical for the transcriptional regulation of specific downstream mRNAs and microRNAs and is likely to underlie the chemoresistance of SCC cells. However, SCC cells expressing non-p-Delta Np63 alpha became more cisplatin-resistant. We also found that p-Delta Np63 alpha forms complexes with a number of proteins involved in cell death response through regulation of cell cycle arrest, apoptosis, autophagy, RNA splicing and chromatin modifications. Here, we showed that p-Delta Np63 alpha induced ARG1, GAPDH, and CPT2 gene transcription in cisplatin-sensitive SCC cells, while non-p-Delta Np63 alpha increased a transcription of CAD, G6PD and FASN genes in cisplatin-resistant SCC cells. We report that the p-Delta Np63 alpha-dependent regulatory mechanisms implicated in the modulation of plethora of pathways, including amino acid, carbohydrate, lipid and nucleotide metabolisms, thereby affect tumor cell response to cisplatin-induced cell death, suggesting that the ATM-dependent Delta Np63 alpha pathway plays a role in the resistance of tumor cells to platinum therapy.
引用
收藏
页码:3810 / 3827
页数:18
相关论文
共 85 条
[1]   apoB and apobec1, two genes key to lipid metabolism, are transcriptionally regulated by p53 [J].
Ashur-Fabian, Osnat ;
Har-Zahav, Adi ;
Shaish, Aviv ;
Amram, Hila Wiener ;
Margalit, Ofer ;
Weizer-Stern, Orly ;
Dominissini, Dan ;
Harats, Dror ;
Amariglio, Ninette ;
Rechavi, Gideon .
CELL CYCLE, 2010, 9 (18) :3761-3770
[2]   Mechanism of apoptosis induced by the inhibition of fatty acid synthase in breast cancer cells [J].
Bandyopadhyay, S ;
Zhan, R ;
Wang, Y ;
Pai, SK ;
Hirota, S ;
Hosobe, S ;
Takano, Y ;
Saito, K ;
Furuta, E ;
Iiizumi, M ;
Mohinta, S ;
Watabe, M ;
Chalfant, C ;
Watabe, K .
CANCER RESEARCH, 2006, 66 (11) :5934-5940
[3]   TIGAR, a p53-inducible regulator of glycolysis and apoptosis [J].
Bensaad, Karim ;
Tsuruta, Atsushi ;
Selak, Mary A. ;
Calvo Vidal, M. Nieves ;
Nakano, Katsunori ;
Bartrons, Ramon ;
Gottlieb, Eyal ;
Vousden, Karen H. .
CELL, 2006, 126 (01) :107-120
[4]   The glucose dependence of Akt-transformed cells can be reversed by pharmacologic activation of fatty acid β-oxidation [J].
Buzzai, M ;
Bauer, DE ;
Jones, RG ;
DeBerardinis, RJ ;
Hatzivassiliou, G ;
Elstrom, RL ;
Thompson, CB .
ONCOGENE, 2005, 24 (26) :4165-4173
[5]   Consensus-Phenotype Integration of Transcriptomic and Metabolomic Data Implies a Role for Metabolism in the Chemosensitivity of Tumour Cells [J].
Cavill, Rachel ;
Kamburov, Atanas ;
Ellis, James K. ;
Athersuch, Toby J. ;
Blagrove, Marcus S. C. ;
Herwig, Ralf ;
Ebbels, Timothy M. D. ;
Keun, Hector C. .
PLOS COMPUTATIONAL BIOLOGY, 2011, 7 (03)
[6]   Identification of Hypermethylated Genes Associated with Cisplatin Resistance in Human Cancers [J].
Chang, Xiaofei ;
Monitto, Constance L. ;
Demokan, Semra ;
Kim, Myoung Sook ;
Chang, Steven S. ;
Zhong, Xiaoli ;
Califano, Joseph A. ;
Sidransky, David .
CANCER RESEARCH, 2010, 70 (07) :2870-2879
[7]   In-depth Identification of Pathways Related to Cisplatin-induced Hepatotoxicity through an Integrative Method Based on an Informatics-assisted Label-free Protein Quantitation and Microarray Gene Expression Approach [J].
Cho, Young-Eun ;
Singh, Thoudam S. K. ;
Lee, Hyun-Chul ;
Moon, Pyong-Gon ;
Lee, Jeong-Eun ;
Lee, Myung-Hoon ;
Choi, Eung-Chil ;
Chen, Yu-Ju ;
Kim, Sang-Hyun ;
Baek, Moon-Chang .
MOLECULAR & CELLULAR PROTEOMICS, 2012, 11 (01)
[8]   p53-family proteins and their regulators: hubs and spokes in tumor suppression [J].
Collavin, L. ;
Lunardi, A. ;
Del Sal, G. .
CELL DEATH AND DIFFERENTIATION, 2010, 17 (06) :901-911
[9]   The fatty acid synthase gene is a conserved p53 family target from worm to human [J].
D'Erchia, AM ;
Tullo, A ;
Lefkimmiatis, K ;
Saccone, C ;
Sbisà, E .
CELL CYCLE, 2006, 5 (07) :750-758
[10]   Palmitate induces apoptosis via a direct effect on mitochondria [J].
de Pablo, MA ;
Susin, SA ;
Jacotot, E ;
Larochette, N ;
Costantini, P ;
Ravagnan, L ;
Zamzami, N ;
Kroemer, G .
APOPTOSIS, 1999, 4 (02) :81-87