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 PMID:24046360  

A mouse model for inducible overexpression of Prdm14 results in rapid-onset and highly penetrant T-cell acute lymphoblastic leukemia (T-ALL).

Brandi L Carofino | Bernard Ayanga | Monica J Justice
Disease models & mechanisms | 2013

PRDM14 functions in embryonic stem cell (ESC) maintenance to promote the expression of pluripotency-associated genes while suppressing differentiation genes. Expression of PRDM14 is tightly regulated and typically limited to ESCs and primordial germ cells; however, aberrant expression is associated with tumor initiation in a wide variety of human cancers, including breast cancer and leukemia. Here, we describe the generation of a Cre-recombinase-inducible mouse model for the spatial and temporal control of Prdm14 misexpression [ROSA26 floxed-stop Prdm14 (R26PR)]. When R26PR is mated to either of two Cre lines, Mx1-cre or MMTV-cre, mice develop early-onset T-cell acute lymphoblastic leukemia (T-ALL) with median overall survival of 41 and 64 days for R26PR;Mx1-cre and R26PR;MMTV-cre, respectively. T-ALL is characterized by the accumulation of immature single-positive CD8 cells and their widespread infiltration. Leukemia is preceded by a dramatic expansion of cells resembling hematopoietic stem cells and lymphoid-committed progenitors prior to disease onset, accompanied by a blockage in B-cell differentiation at the early pro-B stage. Rapid-onset PRDM14-induced T-ALL requires factors that are present in stem and progenitor cells: R26PR;dLck-cre animals, which express Prdm14 starting at the double-positive stage of thymocyte development, do not develop disease. PRDM14-induced leukemic cells contain high levels of activated NOTCH1 and downstream NOTCH1 targets, including MYC and HES1, and are sensitive to pharmacological inhibition of NOTCH1 with the γ-secretase inhibitor DAPT. Greater than 50% of human T-ALLs harbor activating mutations in NOTCH1; thus, our model carries clinically relevant molecular aberrations. The penetrance, short latency and involvement of the NOTCH1 pathway will make this hematopoietic R26PR mouse model ideal for future studies on disease initiation, relapse and novel therapeutic drug combinations. Furthermore, breeding R26PR to additional Cre lines will allow for the continued development of novel cancer models.

Pubmed ID: 24046360

Research resources used in this publication

None found

Antibodies used in this publication

None found

Associated grants

  • Agency: NCI NIH HHS, United States
    Id: CA125123
  • Agency: NIAID NIH HHS, United States
    Id: AI036211
  • Agency: Howard Hughes Medical Institute, United States
  • Agency: NIH HHS, United States
    Id: U42OD011174
  • Agency: NCI NIH HHS, United States
    Id: P30CA125123
  • Agency: NCI NIH HHS, United States
    Id: R01 CA115503
  • Agency: NIAID NIH HHS, United States
    Id: P30 AI036211
  • Agency: NHGRI NIH HHS, United States
    Id: U54 HG006348
  • Agency: NCRR NIH HHS, United States
    Id: S10 RR024574
  • Agency: NCI NIH HHS, United States
    Id: U54 CA149196
  • Agency: NCI NIH HHS, United States
    Id: R01 CA163849
  • Agency: NCRR NIH HHS, United States
    Id: RR024574
  • Agency: NCI NIH HHS, United States
    Id: P30 CA125123
  • Agency: NIH HHS, United States
    Id: U42 OD011174
  • Agency: NHGRI NIH HHS, United States
    Id: U54HG006348
  • Agency: NCI NIH HHS, United States
    Id: U54CA149196

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This is a list of tools and resources that we have found mentioned in this publication.


CRISPOR (tool)

RRID:SCR_015935

Web application that helps design, evaluate and clone guide sequences for the CRISPR/Cas9 system. This sgRNA design tool assists with guide selection in a variety of genomes and pre-calculated results for all human coding exons as a UCSC Genome Browser track.

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C57BL/6N (tool)

RRID:MGI:2159965

laboratory mouse with name C57BL/6N from MGI.

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B6.Cg-Tg(Mx1-cre)1Cgn/J (tool)

RRID:IMSR_JAX:003556

Mus musculus with name B6.Cg-Tg(Mx1-cre)1Cgn/J from IMSR.

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