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Updated: Jun 21, 2025

Analysis of mRNA Nuclear Export Kinetics in Mammalian Cells by Microinjection
Published on: December 4, 2010
Altered RNA export by SF3B1 mutants confers sensitivity to nuclear export inhibition
Sana Chaudhry1, Felipe Beckedorff1,2, Shaista Shabbir Jasdanwala3
1Sylvester Comprehensive Cancer Center at the University of Miami Miller School of Medicine, Miami, FL, USA.
Abstract:
SF3B1 mutations frequently occur in cancer yet lack targeted therapies. Clinical trials of XPO1 inhibitors, selinexor and eltanexor, in high-risk myelodysplastic neoplasms (MDS) revealed responders were enriched with SF3B1 mutations. Given that XPO1 (Exportin-1) is a nuclear exporter responsible for the export of proteins and multiple RNA species, this led to the hypothesis that SF3B1-mutant cells are sensitive to XPO1 inhibition, potentially due to altered splicing. Subsequent RNA sequencing after XPO1 inhibition in SF3B1 wildtype and mutant cells showed increased nuclear retention of RNA transcripts and increased alternative splicing in the SF3B1 mutant cells particularly of genes that impact apoptotic pathways. To identify novel drug combinations that synergize with XPO1 inhibition, a forward genetic screen was performed with eltanexor treatment implicating anti-apoptotic targets BCL2 and BCLXL, which were validated by functional testing in vitro and in vivo. These targets were tested in vivo using Sf3b1K700E conditional knock-in mice, which showed that the combination of eltanexor and venetoclax (BCL2 inhibitor) had a preferential sensitivity for SF3B1 mutant cells without excessive toxicity. In this study, we unveil the mechanisms underlying sensitization to XPO1 inhibition in SF3B1-mutant MDS and preclinically rationalize the combination of eltanexor and venetoclax for high-risk MDS.
Insights
SF3B1 mutations in cancer are sensitive to XPO1 inhibition, potentially due to altered splicing. Combining eltanexor with venetoclax shows promise for treating high-risk myelodysplastic neoplasms (MDS).
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- SF3B1 mutations are common in cancer but lack targeted treatments.
- XPO1 inhibitors show promise in clinical trials for high-risk myelodysplastic neoplasms (MDS) with SF3B1 mutations.
Purpose of the Study:
- To investigate the mechanism of SF3B1-mutant cell sensitivity to XPO1 inhibition.
- To identify synergistic drug combinations for SF3B1-mutant cancers.
Main Methods:
- RNA sequencing to analyze splicing changes after XPO1 inhibition.
- Forward genetic screen to identify synergistic drug targets.
- In vitro and in vivo validation of drug combinations using Sf3b1 mutant models.
Main Results:
- XPO1 inhibition increases nuclear RNA retention and alternative splicing in SF3B1-mutant cells, affecting apoptotic pathways.
- BCL2 and BCLXL were identified as synergistic targets.
- The combination of eltanexor and venetoclax demonstrated preferential sensitivity and low toxicity in SF3B1-mutant models.
Conclusions:
- SF3B1-mutant cells are uniquely sensitive to XPO1 inhibition due to altered splicing.
- Eltanexor and venetoclax combination is a promising preclinical strategy for high-risk MDS.
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