4.7 Article

The lncRNA CASC15 regulates SOX4 expression in RUNX1-rearranged acute leukemia

Journal

MOLECULAR CANCER
Volume 16, Issue -, Pages -

Publisher

BMC
DOI: 10.1186/s12943-017-0692-x

Keywords

Non-coding RNA; CASC15; ETV6-RUNX1; SOX4; B-all

Funding

  1. NIH [T32 CA009056, T32 CA009120, T32 HL086345, R03CA175426]
  2. National Science Foundation [DGE-1144087]
  3. UCLA
  4. Eli and Edythe Broad Center of Regenerative Medicine and Stem Cell Research at UCLA Training Program
  5. Irving Feintech Family Foundation/Tower Cancer Research Foundation
  6. University of California Cancer Research Coordinating Committee
  7. Stein-Oppenheimer Endowment Award

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Background: Long non-coding RNAs (lncRNAs) play a variety of cellular roles, including regulation of transcription and translation, leading to alterations in gene expression. Some lncRNAs modulate the expression of chromosomally adjacent genes. Here, we assess the roles of the lncRNA CASC15 in regulation of a chromosomally nearby gene, SOX4, and its function in RUNX1/AML translocated leukemia. Results: CASC15 is a conserved lncRNA that was upregulated in pediatric B-acute lymphoblastic leukemia (B-ALL) with t (12; 21) as well as pediatric acute myeloid leukemia (AML) with t (8; 21), both of which are associated with relatively better prognosis. Enforced expression of CASC15 led to a myeloid bias in development, and overall, decreased engraftment and colony formation. At the cellular level, CASC15 regulated cellular survival, proliferation, and the expression of its chromosomally adjacent gene, SOX4. Differentially regulated genes following CASC15 knockdown were enriched for predicted transcriptional targets of the Yin and Yang-1 (YY1) transcription factor. Interestingly, we found that CASC15 enhances YY1-mediated regulation of the SOX4 promoter. Conclusions: Our findings represent the first characterization of this CASC15 in RUNX1-translocated leukemia, and point towards a mechanistic basis for its action.

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