Publication: Developmental regulation of myeloerythroid progenitor function by the Lin28b–let-7–Hmga2 axis
Open/View Files
Date
2016
Published Version
Journal Title
Journal ISSN
Volume Title
Publisher
The Rockefeller University Press
The Harvard community has made this article openly available. Please share how this access benefits you.
Citation
Rowe, R. G., L. D. Wang, S. Coma, A. Han, R. Mathieu, D. S. Pearson, S. Ross, et al. 2016. “Developmental regulation of myeloerythroid progenitor function by the Lin28b–let-7–Hmga2 axis.” The Journal of Experimental Medicine 213 (8): 1497-1512. doi:10.1084/jem.20151912. http://dx.doi.org/10.1084/jem.20151912.
Research Data
Abstract
For appropriate development, tissue and organ system morphogenesis and maturation must occur in synchrony with the overall developmental requirements of the host. Mistiming of such developmental events often results in disease. The hematopoietic system matures from the fetal state, characterized by robust erythrocytic output that supports prenatal growth in the hypoxic intrauterine environment, to the postnatal state wherein granulocytes predominate to provide innate immunity. Regulation of the developmental timing of these myeloerythroid states is not well understood. In this study, we find that expression of the heterochronic factor Lin28b decreases in common myeloid progenitors during hematopoietic maturation to adulthood in mice. This decrease in Lin28b coincides with accumulation of mature let-7 microRNAs, whose biogenesis is regulated by Lin28 proteins. We find that inhibition of let-7 in the adult hematopoietic system recapitulates fetal erythroid-dominant hematopoiesis. Conversely, deletion of Lin28b or ectopic activation of let-7 microRNAs in the fetal state induces a shift toward adult-like myeloid-dominant output. Furthermore, we identify Hmga2 as an effector of this genetic switch. These studies provide the first detailed analysis of the roles of endogenous Lin28b and let-7 in the timing of hematopoietic states during development.
Description
Other Available Sources
Keywords
Article
Terms of Use
This article is made available under the terms and conditions applicable to Other Posted Material (LAA), as set forth at Terms of Service