Gene networks and expression quantitative trait loci associated with adjuvant chemotherapy response in high-grade serous ovarian cancer

被引:6
作者
Choi, Jihoon [1 ]
Topouza, Danai G. [1 ]
Tarnouskaya, Anastasiya [2 ]
Nesdoly, Sean [2 ]
Koti, Madhuri [1 ]
Duan, Qing Ling [1 ,2 ]
机构
[1] Queens Univ, Dept Biomed & Mol Sci, Kingston, ON, Canada
[2] Queens Univ, Sch Comp, Kingston, ON, Canada
基金
加拿大创新基金会;
关键词
Chemotherapy resistance; Co-expression network analysis; Valosin containing protein; Expression quantitative trait loci; The Cancer Genome Atlas; High-grade serous ovarian carcinoma; Genome-wide association study; Differential gene expression analysis; Transcriptomics; Genomics; PERITONEAL CARCINOMA; RESISTANT OVARIAN; CISPLATIN; RECURRENT; CHOLESTEROL; TOOL;
D O I
10.1186/s12885-020-06922-1
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Background A major impediment in the treatment of ovarian cancer is the relapse of chemotherapy-resistant tumors, which occurs in approximately 25% of patients. A better understanding of the biological mechanisms underlying chemotherapy resistance will improve treatment efficacy through genetic testing and novel therapies. Methods Using data from high-grade serous ovarian carcinoma (HGSOC) patients in the Cancer Genome Atlas (TCGA), we classified those who remained progression-free for 12 months following platinum-taxane combination chemotherapy as "chemo-sensitive" (N = 160) and those who had recurrence within 6 months as "chemo-resistant" (N = 110). Univariate and multivariate analysis of expression microarray data were used to identify differentially expressed genes and co-expression gene networks associated with chemotherapy response. Moreover, we integrated genomics data to determine expression quantitative trait loci (eQTL). Results Differential expression of the Valosin-containing protein (VCP) gene and five co-expression gene networks were significantly associated with chemotherapy response in HGSOC. VCP and the most significant co-expression network module contribute to protein processing in the endoplasmic reticulum, which has been implicated in chemotherapy response. Both univariate and multivariate analysis findings were successfully replicated in an independent ovarian cancer cohort. Furthermore, we identified 192 cis-eQTLs associated with the expression of network genes and 4 cis-eQTLs associated with BRCA2 expression. Conclusion This study implicates both known and novel genes as well as biological processes underlying response to platinum-taxane-based chemotherapy among HGSOC patients.
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页数:11
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共 60 条
  • [1] SurvExpress: An Online Biomarker Validation Tool and Database for Cancer Gene Expression Data Using Survival Analysis
    Aguirre-Gamboa, Raul
    Gomez-Rueda, Hugo
    Martinez-Ledesma, Emmanuel
    Martinez-Torteya, Antonio
    Chacolla-Huaringa, Rafael
    Rodriguez-Barrientos, Alberto
    Tamez-Pena, Jose G.
    Trevino, Victor
    [J]. PLOS ONE, 2013, 8 (09):
  • [2] [Anonymous], 2018, WORLD OVARIAN CANC C
  • [3] [Anonymous], GENE NETWORKS EXPRES
  • [4] [Anonymous], GLOB 2012 HOM
  • [5] [Anonymous], 2015, Nature, DOI DOI 10.1038/NATURE15393
  • [6] [Anonymous], CELL DEATH DIS
  • [7] Relapsed ovarian cancer: Challenges and management strategies for a chronic disease
    Armstrong, DK
    [J]. ONCOLOGIST, 2002, 7 : 20 - 28
  • [8] STAT1-associated intratumoural T(H)1 immunity predicts chemotherapy resistance in high-grade serous ovarian cancer
    Au, Katrina K.
    Le Page, Cecile
    Ren, Runhan
    Meunier, Liliane
    Clement, Isabelle
    Tyrishkin, Kathrin
    Peterson, Nichole
    Kendall-Dupont, Jennifer
    Childs, Timothy
    Francis, Julie-Ann
    Graham, Charles H.
    Craig, Andrew W.
    Squire, Jeremy A.
    Mes-Masson, Anne-Marie
    Koti, Madhuri
    [J]. JOURNAL OF PATHOLOGY CLINICAL RESEARCH, 2016, 2 (04) : 259 - 270
  • [9] VCP inhibitors induce endoplasmic reticulum stress, cause cell cycle arrest, trigger caspase-mediated cell death and synergistically kill ovarian cancer cells in combination with Salubrinal
    Bastola, Prabhakar
    Neums, Lisa
    Schoenen, Frank J.
    Chien, Jeremy
    [J]. MOLECULAR ONCOLOGY, 2016, 10 (10) : 1559 - 1574
  • [10] Integrated genomic analyses of ovarian carcinoma
    Bell, D.
    Berchuck, A.
    Birrer, M.
    Chien, J.
    Cramer, D. W.
    Dao, F.
    Dhir, R.
    DiSaia, P.
    Gabra, H.
    Glenn, P.
    Godwin, A. K.
    Gross, J.
    Hartmann, L.
    Huang, M.
    Huntsman, D. G.
    Iacocca, M.
    Imielinski, M.
    Kalloger, S.
    Karlan, B. Y.
    Levine, D. A.
    Mills, G. B.
    Morrison, C.
    Mutch, D.
    Olvera, N.
    Orsulic, S.
    Park, K.
    Petrelli, N.
    Rabeno, B.
    Rader, J. S.
    Sikic, B. I.
    Smith-McCune, K.
    Sood, A. K.
    Bowtell, D.
    Penny, R.
    Testa, J. R.
    Chang, K.
    Dinh, H. H.
    Drummond, J. A.
    Fowler, G.
    Gunaratne, P.
    Hawes, A. C.
    Kovar, C. L.
    Lewis, L. R.
    Morgan, M. B.
    Newsham, I. F.
    Santibanez, J.
    Reid, J. G.
    Trevino, L. R.
    Wu, Y. -Q.
    Wang, M.
    [J]. NATURE, 2011, 474 (7353) : 609 - 615