Humanized yeast genetic interaction mapping predicts synthetic lethal interactions of FBXW7 in breast cancer

被引:4
|
作者
Kirzinger, Morgan W. B. [1 ]
Vizeacoumar, Frederick S. [2 ]
Haave, Bjorn [2 ]
Gonzalez-Lopez, Cristina [2 ]
Bonham, Keith [3 ]
Kusalik, Anthony [1 ]
Vizeacoumar, Franco J. [2 ,3 ,4 ,5 ]
机构
[1] Univ Saskatchewan, Coll Arts & Sci, Dept Comp Sci, 176 Thorvaldson Bldg,110 Sci Pl, Saskatoon, SK S7N 5C9, Canada
[2] Univ Saskatchewan, Coll Med, Dept Pathol & Lab Med, 107 Wiggins Rd, Saskatoon, SK S7N 5E5, Canada
[3] Saskatchewan Canc Agcy, Canc Res, 107 Wiggins Rd, Saskatoon, SK S7N 5E5, Canada
[4] Univ Saskatchewan, Coll Med, Div Oncol, 107 Wiggins Rd, Saskatoon, SK S7N 5E5, Canada
[5] Univ Saskatchewan, Canc Cluster, Rm 4D01-5 Hlth Sci Bldg,107 Wiggins Rd, Saskatoon, SK S7N 5E5, Canada
基金
加拿大自然科学与工程研究理事会;
关键词
Synthetic lethality; Breast cancer; Gene expression; Genetic interaction network; METABOLIC CONTROL ANALYSIS; TUMOR-SUPPRESSOR; CELLS; DISCOVERY; APOPTOSIS; GROWTH; IDENTIFICATION; ACTIVATION; NETWORKS; RIBOSE;
D O I
10.1186/s12920-019-0554-z
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
BackgroundSynthetic lethal interactions (SLIs) that occur between gene pairs are exploited for cancer therapeutics. Studies in the model eukaryote yeast have identified 550,000 negative genetic interactions that have been extensively studied, leading to characterization of novel pathways and gene functions. This resource can be used to predict SLIs that can be relevant to cancer therapeutics.MethodsWe used patient data to identify genes that are down-regulated in breast cancer. InParanoid orthology mapping was performed to identify yeast orthologs of the down-regulated genes and predict their corresponding SLIs in humans. The predicted network graphs were drawn with Cytoscape. CancerRXgene database was used to predict drug response.ResultsHarnessing the vast available knowledge of yeast genetics, we generated a Humanized Yeast Genetic Interaction Network (HYGIN) for 1009 human genes with 10,419 interactions. Through the addition of patient-data from The Cancer Genome Atlas (TCGA), we generated a breast cancer specific subnetwork. Specifically, by comparing 1009 genes in HYGIN to genes that were down-regulated in breast cancer, we identified 15 breast cancer genes with 130 potential SLIs. Interestingly, 32 of the 130 predicted SLIs occurred with FBXW7, a well-known tumor suppressor that functions as a substrate-recognition protein within a SKP/CUL1/F-Box ubiquitin ligase complex for proteasome degradation. Efforts to validate these SLIs using chemical genetic data predicted that patients with loss of FBXW7 may respond to treatment with drugs like Selumitinib or Cabozantinib.ConclusionsThis study provides a patient-data driven interpretation of yeast SLI data. HYGIN represents a novel strategy to uncover therapeutically relevant cancer drug targets and the yeast SLI data offers a major opportunity to mine these interactions.
引用
收藏
页数:11
相关论文
共 50 条
  • [21] MicroRNA-32 promotes cell proliferation, migration and suppresses apoptosis in breast cancer cells by targeting FBXW7
    Xia, Wei
    Zhou, JueYu
    Luo, HaiBo
    Liu, YunZhou
    Peng, CanCan
    Zheng, WenLing
    Ma, WenLi
    CANCER CELL INTERNATIONAL, 2017, 17
  • [22] Inferring synthetic lethal interactions from mutual exclusivity of genetic events in cancer
    Srihari, Sriganesh
    Singla, Jitin
    Wong, Limsoon
    Ragan, Mark A.
    BIOLOGY DIRECT, 2015, 10
  • [23] Inferring synthetic lethal interactions from mutual exclusivity of genetic events in cancer
    Sriganesh Srihari
    Jitin Singla
    Limsoon Wong
    Mark A. Ragan
    Biology Direct, 10
  • [24] miR-223-3p targets FBXW7 to promote epithelial-mesenchymal transition and metastasis in breast cancer
    Wang, Yuli
    Shi, Shuang
    Wang, Yunshan
    Zhang, Xuhua
    Liu, Xiaoyan
    Li, Juan
    Li, Peilong
    Du, Lutao
    Wang, Chuanxin
    THORACIC CANCER, 2022, 13 (03) : 474 - 482
  • [25] Synthetic Lethal Interactions Between EGFR and PARP Inhibition in Triple Negative Breast Cancer
    Nowsheen, S.
    Cooper, T.
    LoBuglio, A. F.
    Bonner, J. A.
    Yang, E. S.
    INTERNATIONAL JOURNAL OF RADIATION ONCOLOGY BIOLOGY PHYSICS, 2012, 84 (03): : S176 - S177
  • [26] Identification of robust E-cadherin-related synthetic lethal interactions in breast cancer
    Bajrami, I.
    Lord, C.
    EUROPEAN JOURNAL OF CANCER, 2018, 103 : E139 - E139
  • [27] Genetic alteration mapping on chromosome 7 in primary breast cancer
    Bieche, I
    Khodja, A
    Driouch, K
    Lidereau, R
    CLINICAL CANCER RESEARCH, 1997, 3 (06) : 1009 - 1016
  • [28] A Synthetic Dosage Lethal Genetic Interaction Between CKS1B and PLK1 Is Conserved in Yeast and Human Cancer Cells
    Reid, Robert J. D.
    Du, Xing
    Sunjevaric, Ivana
    Rayannavar, Vinayak
    Dittmar, John
    Bryant, Eric
    Maurer, Matthew
    Rothstein, Rodney
    GENETICS, 2016, 204 (02) : 807 - +
  • [29] Synthetic Lethal and Resistance Interactions with BET Bromodomain Inhibitors in Triple-Negative Breast Cancer
    Shu, Shaokun
    Wu, Hua-Jun
    Ge, Jennifer Y.
    Zeid, Rhamy
    Harris, Isaac S.
    Jovanovic, Bojana
    Murphy, Katherine
    Wang, Binbin
    Qiu, Xintao
    Endress, Jennifer E.
    Reyes, Jaime
    Lim, Klothilda
    Font-Tello, Alba
    Syamala, Sudeepa
    Xiao, Tengfei
    Chilamakuri, Chandra Sekhar Reddy
    Papachristou, Evangelia K.
    D'Santos, Clive
    Anand, Jayati
    Hinohara, Kunihiko
    Li, Wei
    McDonald, Thomas O.
    Luoma, Adrienne
    Modiste, Rebecca J.
    Quang-De Nguyen
    Michel, Brittany
    Cejas, Paloma
    Kadoch, Cigall
    Jaffe, Jacob D.
    Wucherpfennig, Kai W.
    Qi, Jun
    Liu, X. Shirley
    Long, Henry
    Brown, Myles
    Carroll, Jason S.
    Brugge, Joan S.
    Bradner, James
    Michor, Franziska
    Polyak, Kornelia
    MOLECULAR CELL, 2020, 78 (06) : 1096 - +
  • [30] MAGEA1 interacts with FBXW7 and regulates ubiquitin ligase-mediated turnover of NICD1 in breast and ovarian cancer cells
    Zhao, J.
    Wang, Y.
    Mu, C.
    Xu, Y.
    Sang, J.
    ONCOGENE, 2017, 36 (35) : 5023 - 5034