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SF3B1 mutation accelerates the development of CLL via activation of the mTOR pathway
Bo Zhang, Prajish Iyer, Meiling Jin, Elisa Ten Hacken, Zachary J. Cartun, Kevyn L. Hart, Mike Fernandez, Kristen Stevenson, Laura Rassenti, Emanuela M. Ghia, Thomas J. Kipps, Donna Neuberg, Ruben Carrasco, Wing C. Chan, Joo Y. Song, Yu Hu, Catherine J. Wu, Lili Wang
Bo Zhang, Prajish Iyer, Meiling Jin, Elisa Ten Hacken, Zachary J. Cartun, Kevyn L. Hart, Mike Fernandez, Kristen Stevenson, Laura Rassenti, Emanuela M. Ghia, Thomas J. Kipps, Donna Neuberg, Ruben Carrasco, Wing C. Chan, Joo Y. Song, Yu Hu, Catherine J. Wu, Lili Wang
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Research Article Hematology Oncology

SF3B1 mutation accelerates the development of CLL via activation of the mTOR pathway

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Abstract

RNA splicing factor SF3B1 is one of the most recurrently mutated genes in chronic lymphocytic leukemia (CLL) and frequently co-occurs with chromosome 13q deletion [del(13q)]. This combination is associated with poor prognosis in CLL, suggesting these lesions increase CLL aggressiveness. While del(13q) in murine B cells (minimal deleted region of 13q14 includes DLEU1, DLEU2, and miR15a-16-1; Mdr mice), but not expression of Sf3b1-K700E, drives the initiation of CLL, we hypothesize that SF3B1 mutation accelerates CLL progression. In this study, we crossed mice with a B cell–specific Sf3b1-K700E allele with Mdr mice to determine the impact of Sf3b1 mutation on CLL progression. We found that the co-occurrence of these 2 lesions in murine B cells caused acceleration of CLL. We showed that Sf3b1-K700E impacted alternative RNA splicing of nuclear factor of activated T cells C1 (Nfatc1) and activated mTOR signaling and the MYC pathway, contributing to CLL acceleration. Moreover, concurrent inhibition of RNA splicing and the mTOR pathway led to cell death in vitro and in vivo in murine CLL cells with SF3B1 mutation and del(13q). Our results thus suggest that SF3B1 mutation contributes to the aggressiveness of CLL by activating the mTOR pathway through alternative splicing of Nfatc1, providing a rationale for targeting mTOR and RNA splicing in the subset of CLL patients with both SF3B1 mutations and del(13q).

Authors

Bo Zhang, Prajish Iyer, Meiling Jin, Elisa Ten Hacken, Zachary J. Cartun, Kevyn L. Hart, Mike Fernandez, Kristen Stevenson, Laura Rassenti, Emanuela M. Ghia, Thomas J. Kipps, Donna Neuberg, Ruben Carrasco, Wing C. Chan, Joo Y. Song, Yu Hu, Catherine J. Wu, Lili Wang

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Figure 5

Targeting RNA splicing and the mTORC1 pathway has therapeutic effects in DM CLL cells.

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Targeting RNA splicing and the mTORC1 pathway has therapeutic effects in...
(A–C) Cell viability of Mdr MT CLL, DM CLL, and DM normal B cells treated with either H3B-8800 or temsirolimus or in combination over 24 hours. (D–F) Survival curve of Mdr MT CLL mice, with DM CLL mice treated with either single-drug H3B-8800 (4 mg/kg, 5 days, oral gavage) or temsirolimus (15 mg/kg, 5 days, intraperitoneal injection) or in combination. Gray shaded area indicates treatment time. CLL mice were established by engrafting Mdr MT CLL or DM CLL cells into NSG mice. Treatment started with detectable 3%–5% circulating CLL based on flow cytometry. (G) Cell viability of human CLL cells with or without SF3B1 mutation, in the presence or absence of del(13q) after 24 hours of treatment with increasing concentrations of temsirolimus (0.1 nM to 10 μM) combined with 0.1 mM H3B-8800. Black dotted line indicates the dosage used for statistical calculation. Two-way ANOVA with Tukey’s test was used to compare del(13q) with SF3B1 mutation with other groups. (H) Schematic summary of the mechanism of DM CLL development.

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