TY - JOUR
T1 - Prdm16 is a physiologic regulator of hematopoietic stem cells
AU - Aguilo, Francesca
AU - Avagyan, Serine
AU - Labar, Amy
AU - Sevilla, Ana
AU - Lee, Dung Fang
AU - Kumar, Parameet
AU - Lemischka, Ihor R.
AU - Zhou, Betty Y.
AU - Snoeck, Hans Willem
N1 - R01 HL073760, NHLBI NIH HHS, United StatesR01AG 016327, NIA NIH HHS, United States
PY - 2011/5/12
Y1 - 2011/5/12
N2 - Fetal liver and adult bone marrow hematopoietic stem cells (HSCs) renew or differentiate into committed progenitors to generate all blood cells. PRDM16 is involved in human leukemic translocations and is expressed highly in some karyotypically normal acute myeloblastic leukemias. As many genes involved in leukemogenic fusions play a role in normal hematopoiesis, we analyzed the role of Prdm16 in the biology of HSCs using Prdm16-deficient mice. We show here that, within the hematopoietic system, Prdm16 is expressed very selectively in the earliest stem and progenitor compartments, and, consistent with this expression pattern, is critical for the establishment and maintenance of the HSC pool during development and after transplantation. Prdm16 deletion enhances apoptosis and cycling of HSCs. Expression analysis revealed that Prdm16 regulates a remarkable number of genes that, based on knockout models, both enhance and suppress HSC function, and affect quiescence, cell cycling, renewal, differentiation, and apoptosis to various extents. These data suggest that Prdm16 may be a critical node in a network that contains negative and positive feedback loops and integrates HSC renewal, quiescence, apoptosis, and differentiation. © 2011 by The American Society of Hematology.
AB - Fetal liver and adult bone marrow hematopoietic stem cells (HSCs) renew or differentiate into committed progenitors to generate all blood cells. PRDM16 is involved in human leukemic translocations and is expressed highly in some karyotypically normal acute myeloblastic leukemias. As many genes involved in leukemogenic fusions play a role in normal hematopoiesis, we analyzed the role of Prdm16 in the biology of HSCs using Prdm16-deficient mice. We show here that, within the hematopoietic system, Prdm16 is expressed very selectively in the earliest stem and progenitor compartments, and, consistent with this expression pattern, is critical for the establishment and maintenance of the HSC pool during development and after transplantation. Prdm16 deletion enhances apoptosis and cycling of HSCs. Expression analysis revealed that Prdm16 regulates a remarkable number of genes that, based on knockout models, both enhance and suppress HSC function, and affect quiescence, cell cycling, renewal, differentiation, and apoptosis to various extents. These data suggest that Prdm16 may be a critical node in a network that contains negative and positive feedback loops and integrates HSC renewal, quiescence, apoptosis, and differentiation. © 2011 by The American Society of Hematology.
U2 - 10.1182/blood-2010-08-300145
DO - 10.1182/blood-2010-08-300145
M3 - Article
C2 - 21343612
SN - 0006-4971
VL - 117
SP - 5057
EP - 5066
JO - Blood
JF - Blood
IS - 19
ER -