Literature DB >> 25958981

Global gene deregulations in FASN silenced retinoblastoma cancer cells: molecular and clinico-pathological correlations.

Manoharan Sangeetha1,2, Perinkulam Ravi Deepa1, Pukhraj Rishi3, Vikas Khetan3, Subramanian Krishnakumar2.   

Abstract

Activation of fatty acid synthase (FASN) enzyme in the de novo lipogenic pathway has been reported in various cancers including retinoblastoma (RB), a pediatric ocular cancer. The present study investigates lipogenesis-dependent survival of RB cancer cells and the associated molecular pathways in FASN silenced RB cells. The siRNA-mediated FASN gene knockdown in RB cancer cells (Y79, WERI RB1) repressed FASN mRNA and protein expressions, and decreased cancer cell viability. Global gene expression microarray analysis was performed in optimized FASN siRNA transfected and untransfected RB cells. Deregulation of various downstream cell signaling pathways such as EGFR (n = 55 genes), TGF-beta (n = 45 genes), cell cycle (n = 41 genes), MAPK (n = 39 genes), lipid metabolism (n = 23 genes), apoptosis (n = 21 genes), GPCR signaling (n = 21 genes), and oxidative phosporylation (n = 18 genes) were observed. The qRT-PCR validation in FASN knockdown RB cells revealed up-regulation of ANXA1, DAPK2, and down-regulation of SKP2, SREBP1c, RXRA, ACACB, FASN, HMGCR, USP2a genes that favored the anti-cancer effect of lipogenic inhibition in RB. The expression of these genes in primary RB tumor tissues were correlated with FASN expression, based on their clinico-pathological features. The differential phosphorylation status of the various PI3K/AKT pathway proteins (by western analysis) indicated that the FASN gene silencing indeed mediated apoptosis in RB cells through the PI3K/AKT pathway. Scratch assay clearly revealed that FASN silencing reduced the invading property of RB cancer cells. Dependence of RB cancer cells on lipid metabolism for survival and progression is implicated. Thus targeting FASN is a promising strategy in RB therapy.
© 2015 Wiley Periodicals, Inc.

Entities:  

Keywords:  APOPTOSIS; DE NOVO LIPOGENESIS; FATTY ACID SYNTHASE; GENE SILENCING; RETINOBLASTOMA

Mesh:

Substances:

Year:  2015        PMID: 25958981     DOI: 10.1002/jcb.25217

Source DB:  PubMed          Journal:  J Cell Biochem        ISSN: 0730-2312            Impact factor:   4.429


  6 in total

1.  Crosstalk between osteoprotegerin (OPG), fatty acid synthase (FASN) and, cycloxygenase-2 (COX-2) in breast cancer: implications in carcinogenesis.

Authors:  Sudeshna Goswami; Neelam Sharma-Walia
Journal:  Oncotarget       Date:  2016-09-13

2.  Interplay of PKD3 with SREBP1 Promotes Cell Growth via Upregulating Lipogenesis in Prostate Cancer Cells.

Authors:  Ling Li; Liang Hua; Huihui Fan; Yu He; Wanfu Xu; Lin Zhang; Jie Yang; Fan Deng; Fangyin Zeng
Journal:  J Cancer       Date:  2019-10-19       Impact factor: 4.207

3.  LINC00202 promotes retinoblastoma progression by regulating cell proliferation, apoptosis, and aerobic glycolysis through miR-204-5p/HMGCR axis.

Authors:  Aimin Wu; Xuewei Zhou; Linglong Mi; Jiang Shen
Journal:  Open Life Sci       Date:  2020-06-30       Impact factor: 0.938

Review 4.  Osteoprotegerin rich tumor microenvironment: implications in breast cancer.

Authors:  Sudeshna Goswami; Neelam Sharma-Walia
Journal:  Oncotarget       Date:  2016-07-05

5.  Association between different levels of lipid metabolism‑related enzymes and fatty acid synthase in Wilms' tumor.

Authors:  Xiaoqing Wang; Guoqiang Du; Yidi Wu; Yongfei Zhang; Feng Guo; Wei Liu; Rongde Wu
Journal:  Int J Oncol       Date:  2019-12-20       Impact factor: 5.650

Review 6.  Lipid metabolism in cancer: A systematic review.

Authors:  Wafa Khan; Dominic Augustine; Roopa S Rao; Shankargouda Patil; Kamran Habib Awan; Samudrala Venkatesiah Sowmya; Vanishri C Haragannavar; Kavitha Prasad
Journal:  J Carcinog       Date:  2021-05-06
  6 in total

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