High-Throughput RNA Interference Screening Identifies Synthetic Lethality Between Oncogenic KRAS Dependency and Suppression of STK33

Blood ◽  
2008 ◽  
Vol 112 (11) ◽  
pp. 3806-3806
Author(s):  
Claudia Scholl ◽  
Stefan Frohling ◽  
Ian F. Dunn ◽  
David A. Barbie ◽  
Anna C. Schinzel ◽  
...  

Abstract Activating RAS mutations are among the most common pathogenetic events in a broad spectrum of hematologic malignancies and epithelial tumors. However, oncogenic RAS has thus far not proven to be a tractable target for therapeutic intervention. An alternative to direct targeting of known oncogenes is to perform “synthetic lethality” screens to identify genes that are selectively required for cell viability in the context of specific cancer-causing mutations. Using this approach, we have discovered a synthetic lethal interaction between mutant KRAS, the most frequently mutated oncogene in human cancer, and inactivation of the gene encoding the STK33 serine/threonine protein kinase. To identify genes that are essential for cell viability in the context of mutant KRAS, we performed high-throughput loss-of-function RNA interference (RNAi) screens in eight human cancer cell lines (mutant KRAS, n=4; wildtype KRAS, n=4), representing seven different tumor types (acute myeloid leukemia, multiple myeloma, colon cancer, breast cancer, ovarian cancer, prostate cancer, glioblastoma), as well as normal human fibroblasts and mammary epithelial cells. We screened each cell line with a subset of the short hairpin RNA (shRNA) library developed by the RNAi Consortium (http://www.broad.mit.edu/genome_bio/trc/rnai.html) that consists of 5,024 individual shRNA constructs targeting 1,011 human genes, including the majority of known and putative protein kinase and phosphatase genes and a selection of known cancer-related genes. In these cell lines, suppression of STK33 preferentially inhibited the viability and proliferation of cells that were dependent on mutant KRAS. The differential requirement for STK33 based on oncogenic KRAS dependency was confirmed in 16 additional cell lines using in vitro transformation assays and human tumor xenograft models. Biochemical analyses support the hypothesis that STK33 promotes cell growth and survival in a kinase activity-dependent manner by regulating the activity of S6K1 as well as BAD-induced apoptosis selectively in mutant KRAS-dependent cells. Notably, molecular genetic characterization of cancer cell lines and analysis of patient-derived genomic data sets indicate that STK33 is not frequently mutated or overexpressed in human tumors. These observations identify STK33 as a potential target for the treatment of mutant KRAS-driven cancers that may have a broad therapeutic index in normal versus malignant cells, and illustrate the potential of RNAi for discovering critical functional dependencies created by oncogenic mutations that cannot be identified using other genomic technologies.


2013 ◽  
Vol 34 (7) ◽  
pp. 1497-1509 ◽  
Author(s):  
Wing-Keung Chu ◽  
Pei-Min Dai ◽  
Hsin-Lun Li ◽  
Chia-Chu Pao ◽  
Jan-Kan Chen


2011 ◽  
Vol 63 (3) ◽  
pp. 444-455 ◽  
Author(s):  
Aaron Tan ◽  
Izabela Konczak ◽  
Iqbal Ramzan ◽  
Daniel Sze


Molecules ◽  
2020 ◽  
Vol 25 (3) ◽  
pp. 677 ◽  
Author(s):  
Hong-Jhih Lin ◽  
Jinn-Hsuan Ho ◽  
Li-Chen Tsai ◽  
Fang-Yu Yang ◽  
Ling-Ling Yang ◽  
...  

The objective of this study was to synthesize the 9-/13-position substituted berberine derivatives and evaluate their cytotoxic and photocytotoxic effects against three human cancer cell lines. Among all the synthesized compounds, 9-O-dodecyl- (5e), 13-dodecyl- (6e), and 13-O-dodecyl-berberine (7e) exhibited stronger growth inhibition against three human cancer cell lines, (HepG2, HT-29 and BFTC905), in comparison with structurally related berberine (1). These three compounds also showed the photocytotoxicity in human cancer cells in a concentration-dependent and light dose-dependent manner. Through flow cytometry analysis, we found out a lipophilic group at the 9-/13-position of berberine may have facilitated its penetration into test cells and hence enhanced its photocytotoxicity on the human liver cancer cell HepG2. Further, in cell cycle analysis, 5e, 6e, and 7e induced HepG2 cells to arrest at the S phase and caused apoptosis upon irradiation. In addition, photodynamic treatment of berberine derivatives 5e, 6e, and 7e again showed a significant photocytotoxic effects on HepG2 cells, induced remarkable cell apoptosis, greatly increased intracellular ROS level, and the loss of mitochondrial membrane potential. These results over and again confirmed that berberine derivatives 5e, 6e, and 7e greatly enhanced photocytotoxicity. Taken together, the test data led us to conclude that berberine derivatives with a dodecyl group at the 9-/13-position could be great candidates for the anti-liver cancer medicines developments.



2016 ◽  
Vol 94 (2) ◽  
pp. 205-211 ◽  
Author(s):  
Karine P. Naidek ◽  
Cristiane R. Zuconelli ◽  
Otavio M. Cruz ◽  
Ronny Ribeiro ◽  
Sheila M.B. Winnischofer ◽  
...  

We synthesized 2,3,6,7,10,11-hexahydroxytriphenylene (HHTP), characterized it by electrochemistry, spectroelectrochemistry, and electron paramagnetic resonance techniques, and evaluated its cytotoxicity to human cancer cell lines. The results revealed that HHTP has accessible higher-oxidation states, especially the tris-semiquinone monoradical. This species is stable and is formed after being stored for months. HHTP exhibited cytotoxic effects on 5 human cancer cell lines, including glioma and lung cancer cells. The cytotoxic effect was evaluated based on the decrease in cell viability, increases in the percentage of cells with fragmented DNA, and elevated numbers of annexin V–PI-positive cells after HHTP treatment.



2003 ◽  
Vol 30 (1-2) ◽  
pp. 96-102 ◽  
Author(s):  
Y Aoki ◽  
DP Cioca ◽  
H Oidaira ◽  
J Kamiya ◽  
K Kiyosawa


2018 ◽  
Vol 12 (4) ◽  
pp. 41-45
Author(s):  
Zahra Yahyavi ◽  
◽  
Mohammad Reza Fazeli ◽  
Mani Mirfeizi ◽  
Shima Aliebrahimi ◽  
...  

Background: Lactobacillus and Bifidobacterium species are among the probiotics discussed due to their anti-cancer effects in the treatment of colorectal and breast cancers in recent studies. The aim of this study was to investigate the anticancer effect of Familact, a commercial probiotic capsule containing seven bacterial strains (L. casei, L. acidophilus, L. rhamnosus, L. bulgaricus, B. breve, B. longum and Streptococcus thermophilus). Methods: Various cancer cell lines including Caco-2, HT-29, T47D and normal cell line L929 were treated with different concentrations of Familact. Using MTT assay, the cytotoxicity effect was investigated for each cell line and then flow cytometry analysis of apoptosis was evaluated. Results: Familact demonstrated inhibitory effects on the proliferation of all tested cancer cell lines in a dose-dependent manner. Although Familact augmented apoptotic cell death in HT-29 human cancer cells, it was less effective in the case of Caco-2 and T47D cells. Moreover, exposure to Familact showed moderate cytotoxicity towards L929 mouse fibroblast cells. Conclusion: Familact could be considered as a complementary therapy in the treatment of cancers.



2017 ◽  
Author(s):  
Traver Hart ◽  
Clara Koh ◽  
Jason Moffat

AbstractGenetic interaction networks are a powerful approach for functional genomics, and the synthetic lethal interactions that comprise these networks offer a compelling strategy for identifying candidate cancer targets. As the number of published shRNA and CRISPR perturbation screens in cancer cell lines expands, there is an opportunity for integrative analysis that goes further than pairwise synthetic lethality and discovers genetic vulnerabilities of related sets of cell lines. We re-analyze over 100 high-quality, genome-scale shRNA screens in human cancer cell lines and derive a quantitative fitness score for each gene that accurately reflects genotype-specific gene essentiality. We identify pairs of genes with correlated essentiality profiles and merge them into a cancer coessentiality network, where shared patterns of genetic vulnerability in cell lines give rise to clusters of functionally related genes in the network. Network clustering discriminates among all three defined subtypes of breast cancer cell lines (basal, luminal, and Her2-amplified), and further identifies novel subsets of Her2+ and ovarian cancer cells. We demonstrate the utility of the network as a platform for both hypothesis-driven and data-driven discovery of context-specific essential genes and their associated biomarkers.



1994 ◽  
Vol 5 ◽  
pp. 29
Author(s):  
Dominic Fan ◽  
Urs Regenass ◽  
Pedro J Beltran ◽  
Tracey E Campbell ◽  
Diane Bielenberg ◽  
...  


2009 ◽  
Vol 4 (6) ◽  
pp. 1934578X0900400 ◽  
Author(s):  
Dan Lu ◽  
Hua He ◽  
Bin Wu ◽  
Shanjing Yao

To find fractions from Spatholobi caulis with cytotoxic effects on cancer cell lines, screening tests were carried out using the SRB assay on the HL60 cell line. Further investigation with HL60 and another four human cancer cell lines (KB, K562, MCF-7 and Hep G2), revealed a dose-dependent response. High-performance liquid chromatography coupled with electrospray ionization-tandem mass spectrometry (HPLC- ESI-MSn) was used to isolate and identify the active constituents from the active fraction. Three fractions (F-IV, F-V and F-VII) showed in vitro cytotoxicity. F-V inhibited the growth of cancer cells in a dose-dependent manner. The IC50 values for KB, K562 and HL60 cells were 17.6, 8.3 and 9.7 μg/mL, respectively. The dominating constituents of F-V were either identified or tentatively characterized as nine phenolic compounds, eight isoflavones and 9-methoxycoumestrol. The isoflavones 7-hydroxy-3′,4′-dimethoxy isoflavone, 7-hydroxy-6,2′,4′-trimethoxy isoflavone and 3′-hydroxy-7,4′-dimethoxy isoflavone are reported for the first time for Spatholobi caulis. The results suggest that these compounds contribute to the cytotoxic effect of Spatholobi caulis.



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