Validation of the Cancer BioChip System as a 3D siRNA Screening Tool for Breast Cancer Targets

被引:6
作者
Marhefka, Joie N. [1 ]
Abbud-Antaki, Rula A. [1 ]
机构
[1] Falcon Genom Inc, Pittsburgh, PA USA
来源
PLOS ONE | 2012年 / 7卷 / 09期
关键词
CATHEPSIN-L; CELL-TRANSFORMATION; GENE-EXPRESSION; PI3K PATHWAY; IN-VITRO; INHIBITION; PROLIFERATION; RNAI; GROWTH; MIGRATION;
D O I
10.1371/journal.pone.0046086
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Genomic studies have revealed that breast cancer consists of a complex biological process with patient-specific genetic variations, revealing the need for individualized cancer diagnostic testing and selection of patient-specific optimal therapies. One of the bottlenecks in translation of genomic breakthroughs to the clinic is the lack of functional genomic assays that have high clinical translatability. Anchorage-independent three-dimensional (3D) growth assays are considered to be the gold-standard for chemosensitivity testing, and leads identified with these assays have high probability of clinical success. The Cancer BioChip System (CBCS) allows for the simultaneous, quantitative, and real time evaluation of multitudes of anchorage-independent breast cancer cell growth inhibitors. We employed a Test Cancer BioChip that contains silencing RNAs (siRNAs) targeting cancer-related genes to identify 3D-specific effectors of breast cancer cell growth. We compared the effect of these siRNAs on colony growth of the hormone receptor positive (MCF7) and Human Epidermal Growth Factor Receptor 2/c-Erythroblastic Leukemia Viral Oncogene Homolog 2 (HER2/c-erb-b2) positive (SK-BR-3) cells on the Test Cancer BioChip. Our results confirmed cell-specific inhibition of MCF7 and SK-BR-3 colony formation by estrogen receptor a (ESR1) and (ERBB2) siRNA, respectively. Both cell lines were also suppressed by Phosphoinositide-3-kinase Catalytic, alpha Polypeptide (PIK3CA) siRNA. Interestingly, we have observed responses to siRNA that are unique to this 3D setting. For example, beta-actin (ACTB) siRNA suppressed colony growth in both cell types while Cathepsin L2 (CTSL2) siRNA caused opposite effects. These results further validate the importance of the CBCS as a tool for the identification of clinically relevant breast cancer targets.
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页数:11
相关论文
共 56 条
[1]  
Abbud-Antaki RA, 2012, HORM CANC
[2]   RNA interference (RNAi) screening approach identifies agents that enhance paclitaxel activity in breast cancer cells [J].
Bauer, Joshua A. ;
Ye, Fei ;
Marshall, Clayton B. ;
Lehmann, Brian D. ;
Pendleton, Christopher S. ;
Shyr, Yu ;
Arteaga, Carlos L. ;
Pietenpol, Jennifer A. .
BREAST CANCER RESEARCH, 2010, 12 (03)
[3]   Inhibition of cysteine cathepsin protease activity enhances chemotherapy regimens by decreasing tumor growth and invasiveness in a mouse model of multistage cancer [J].
Bell-McGuinn, Katherine M. ;
Garfall, Alfred L. ;
Bogyo, Matthew ;
Hanahan, Douglas ;
Joyce, Johanna A. .
CANCER RESEARCH, 2007, 67 (15) :7378-7385
[4]   A functional genetic approach identifies the PI3K pathway as a major determinant of trastuzumab resistance in breast cancer [J].
Berns, Katrien ;
Horlings, Hugo M. ;
Hennessy, Bryan T. ;
Madiredjo, Mandy ;
Hijmans, E. Marielle ;
Beelen, Karin ;
Linn, Sabine C. ;
Gonzalez-Angulo, Ana Maria ;
Stemke-Hale, Katherine ;
Hauptmann, Michael ;
Beijersbergen, Roderick L. ;
Mills, Gordon B. ;
de Vijver, Marc J. van ;
Bernards, Rene .
CANCER CELL, 2007, 12 (04) :395-402
[5]   IN VITRO CELL TRANSFORMATION WITH CHEMICAL CARCINOGENS [J].
BERWALD, Y ;
SACHS, L .
NATURE, 1963, 200 (491) :1182-&
[6]   3′ UTR seed matches, but not overall identity, are associated with RNAi off-targets [J].
Birmingham, A ;
Anderson, EM ;
Reynolds, A ;
Ilsley-Tyree, D ;
Leake, D ;
Fedorov, Y ;
Baskerville, S ;
Maksimova, E ;
Robinson, K ;
Karpilow, J ;
Marshall, WS ;
Khvorova, A .
NATURE METHODS, 2006, 3 (03) :199-204
[7]  
Blumenthal RD, 2005, METH MOLEC MED, V110, P3
[8]   Loss of cathepsin L activity promotes claudin-1 overexpression and intestinal neoplasia [J].
Boudreau, Francois ;
Lussier, Carine R. ;
Mongrain, Sebastien ;
Darsigny, Mathieu ;
Drouin, Julie L. ;
Doyon, Genevieve ;
Suh, Eun Ran ;
Beaulieu, Jean-Francois ;
Rivard, Nathalie ;
Perreault, Nathalie .
FASEB JOURNAL, 2007, 21 (14) :3853-3865
[9]   Induction of an interferon response by RNAi vectors in mammalian cells [J].
Bridge, AJ ;
Pebernard, S ;
Ducraux, A ;
Nicoulaz, AL ;
Iggo, R .
NATURE GENETICS, 2003, 34 (03) :263-264
[10]   Functional Viability Profiles of Breast Cancer [J].
Brough, Rachel ;
Frankum, Jessica R. ;
Sims, David ;
Mackay, Alan ;
Mendes-Pereira, Ana M. ;
Bajrami, Ilirjana ;
Costa-Cabral, Sara ;
Rafiq, Rumana ;
Ahmad, Amar S. ;
Cerone, Maria Antonietta ;
Natrajan, Rachael ;
Sharpe, Rachel ;
Shiu, Kai-Keen ;
Wetterskog, Daniel ;
Dedes, Konstantine J. ;
Lambros, Maryou B. ;
Rawjee, Teeara ;
Linardopoulos, Spiros ;
Reis-Filho, Jorge S. ;
Turner, Nicholas C. ;
Lord, Christopher J. ;
Ashworth, Alan .
CANCER DISCOVERY, 2011, 1 (03) :260-273