Sustained fetal hematopoiesis causes juvenile death from leukemia: evidence from a dual-age–specific mouse model

Author:

Vara Nitza1,Liu Yuqing2,Yan Yan1,Lensing Shelly Y.13,Colorado Natalia1,Robinson Delli1,Zhang Jingliao1,Zhang Xin14,Peterson Erich A.1,Baltz Nicholas J.1,Zhou Daohong14,Bertaina Alice5ORCID,Johann Donald J.1,Emanuel Peter D.16,Liu Y. Lucy15ORCID

Affiliation:

1. Winthrop P. Rockefeller Cancer Institute, College of Medicine, University of Arkansas for Medical Sciences, Little Rock, AR;

2. Medical Center of Hematology, The Xinqiao Hospital of Army Medical University, Chongqing, China;

3. Department of Biostatistics, College of Medicine, University of Arkansas for Medical Sciences, Little Rock, AR;

4. Department of Pharmacodynamics, College of Pharmacy, University of Florida, Gainesville, FL;

5. Division of Stem Cell Transplantation and Regenerative Medicine, Department of Pediatrics, Stanford School of Medicine, Stanford, CA; and

6. Catholic Health Initiatives–St. Vincent, Little Rock, AR

Abstract

Abstract It is not clear whether disrupted age-specific hematopoiesis contributes to the complex manifestations in leukemia patients who carry identical mutations, particularly in pediatric and adult patients with similar clinical characteristics. By studying a dual-age–specific mouse model, we demonstrate that (1) loss of Pten during the fetal-to-adult hematopoiesis switch (hematopoiesis switch) causes sustained fetal hematopoiesis, resulting in death in juvenile leukemia; (2) myeloid-biased hematopoiesis in juvenile mice is associated with the sustained fetal properties of hematopoietic stem cells (HSCs); (3) the age specificity of juvenile myelomonocytic leukemia depends on the copy number of Pten and Nf1; (4) single-allelic Pten deletion during the hematopoiesis switch causes constitutive activation of MAPK in juvenile mice with Nf1 loss of heterozygosity (LOH); and (5) Nf1 LOH causes monocytosis in juvenile mice with Pten haploinsufficiency but does not cause lethality until adulthood. Our data suggest that 1 copy of Pten is sufficient to maintain an intact negative-feedback loop of the Akt pathway and HSC function in reconstitution, despite MAPK being constitutively activated in juvenile Pten+/ΔNf1LOH mice. However, 2 copies of Pten are required to maintain the integrity of the MAPK pathway in juvenile mice with Nf1 haploinsufficiency. Our data indicate that previous investigations of Pten function in wild-type mice may not reflect the impact of Pten loss in mice with Nf1 mutations or other genetic defects. We provide a proof of concept that disassociated age-specific hematopoiesis contributes to leukemogenesis and pediatric demise.

Publisher

American Society of Hematology

Subject

Hematology

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