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Replication Study: Inhibition of BET recruitment to chromatin as an effective treatment for MLL-fusion leukaemia
Xiaochuan Shan1, Juan Jose Fung2, Alan Kosaka2
1University of Pennsylvania, Perelman School of Medicine, Stem Cell and Xenograft Core, Philadelphia, United States.
Abstract:
In 2015, as part of the Reproducibility Project: Cancer Biology, we published a Registered Report (Fung et al., 2015), that described how we intended to replicate selected experiments from the paper "Inhibition of BET recruitment to chromatin as an effective treatment for MLL-fusion leukaemia" (Dawson et al., 2011). Here, we report the results of those experiments. We found treatment of MLL-fusion leukaemia cells (MV4;11 cell line) with the BET bromodomain inhibitor I-BET151 resulted in selective growth inhibition, whereas treatment of leukaemia cells harboring a different oncogenic driver (K-562 cell line) did not result in selective growth inhibition; this is similar to the findings reported in the original study (Figure 2A and Supplementary Figure 11A,B; Dawson et al., 2011). Further, I-BET151 resulted in a statistically significant decrease in BCL2 expression in MV4;11 cells, but not in K-562 cells; again this is similar to the findings reported in the original study (Figure 3D; Dawson et al., 2011). We did not find a statistically significant difference in survival when testing I-BET151 efficacy in a disseminated xenograft MLL mouse model, whereas the original study reported increased survival in I-BET151 treated mice compared to vehicle control (Figure 4B,D; Dawson et al., 2011). Differences between the original study and this replication attempt, such as different conditioning regimens and I-BET151 doses, are factors that might have influenced the outcome. We also found I-BET151 treatment resulted in a lower median disease burden compared to vehicle control in all tissues analyzed, similar to the example reported in the original study (Supplementary Figure 16A; Dawson et al., 2011). Finally, we report meta-analyses for each result.
Insights
This study replicated findings on the BET bromodomain inhibitor I-BET151
Area of Science:
- Oncology
- Molecular Biology
- Drug Discovery
Background:
- The Reproducibility Project: Cancer Biology aimed to replicate key findings in cancer research.
- The original study (Dawson et al., 2011) demonstrated I-BET151's efficacy against MLL-fusion leukemia.
- Replication of cancer drug efficacy studies is crucial for validating therapeutic potential.
Purpose of the Study:
- To replicate the in vitro and in vivo experiments from Dawson et al., 2011 on I-BET151 in MLL-fusion leukemia.
- To assess the reproducibility of I-BET151's selective growth inhibition and BCL2 downregulation in leukemia cell lines.
- To evaluate the efficacy of I-BET151 in a disseminated MLL mouse model.
Main Methods:
- Treatment of MV4;11 (MLL-fusion) and K-562 (non-MLL-fusion) leukemia cell lines with I-BET151.
- Assessment of cell growth inhibition and BCL2 expression levels.
- Evaluation of I-BET151 efficacy in a disseminated xenograft MLL mouse model, including survival and disease burden analysis.
Main Results:
- I-BET151 selectively inhibited growth and decreased BCL2 expression in MV4;11 cells, consistent with the original study.
- No selective growth inhibition was observed in K-562 cells.
- No statistically significant survival difference was found in the MLL mouse model, though disease burden was reduced.
Conclusions:
- The in vitro findings regarding I-BET151's selective effects on MLL-fusion leukemia cells were reproducible.
- The in vivo efficacy in the mouse model did not reach statistical significance for survival, potentially due to experimental condition differences.
- Meta-analyses were conducted to consolidate results from the replication attempt.

