Functional p85α gene is required for normal murine fetal erythropoiesis

Author:

Huddleston Hannah1,Tan Bailin1,Yang Feng-Chun1,White Hilary1,Wenning Mary Jo1,Orazi Attilio1,Yoder Mervin C.1,Kapur Reuben1,Ingram David A.1

Affiliation:

1. From the Department of Pediatrics, Indiana University School of Medicine, Herman B Wells Center for Pediatric Research, Indianapolis; and the Department of Hematology/Pathology, Indiana University School of Medicine, Indianapolis.

Abstract

Abstract In vitro studies suggest that activation of class IA phosphatidylinositol 3 (PI-3) kinase is necessary for normal erythroid cell development. However, when class IA PI-3 kinase–deficient mice were generated by a targeted deletion of the p85α regulatory subunit, fetal erythropoiesis was reportedly unaffected. Given the discrepancies between these studies, we performed a more detailed in vivo analysis of class IA PI-3 kinase–deficient embryos. Day-14.5 p85α-/- embryos are pale with a marked reduction of mature erythrocytes in their peripheral blood. Further, the absolute number and frequency of both early (erythroid burst-forming unit [BFU-E]) and late erythroid progenitors (erythroid colony-forming unit [CFU-E]) are reduced in p85α-/- fetal livers compared with wild-type controls, which is associated with reduced proliferation. Taken together, these data establish an important role for p85α and class IA PI-3 kinase in regulating the development of both early and late erythroid progenitors in fetal liver. (Blood. 2003;102:142-145)

Publisher

American Society of Hematology

Subject

Cell Biology,Hematology,Immunology,Biochemistry

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