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Blood, 2 July 2009, Vol. 114, No. 1, pp. 40-48.
Prepublished online as a Blood First Edition Paper on May 6, 2009; DOI 10.1182/blood-2008-11-189159.


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Submitted November 12, 2008
Accepted April 17, 2009

C/EBP{alpha} initiates primitive myelopoiesis in pluripotent embryonic cells

Yaoyao Chen, Ricardo M.B. Costa, Nick R. Love, Ximena Soto, Martin Roth, Roberto Paredes, and Enrique Amaya*

The Healing Foundation Centre, Faculty of Life Sciences, University of Manchester, Manchester, United Kingdom

* Corresponding author; email: enrique.amaya{at}manchester.ac.uk.

The molecular mechanisms that underlie the development of primitive myeloid cells in vertebrate embryos are not well understood. Here we characterize the role of cebpa during primitive myeloid cell development in Xenopus. We show that cebpa is one of the first known hematopoietic genes expressed in the embryo. Loss and gain-of-function studies show that it is both necessary and sufficient for the development of functional myeloid cells. In addition, we show that cebpa misexpression leads to the precocious induction of myeloid cell markers in pluripotent prospective ectodermal cells, without the cells transitioning through a general mesodermal state. Finally we use live imaging to show that cebpa expressing cells exhibit many attributes of terminally differentiated myeloid cells, such as highly active migratory behavior, the ability to quickly and efficiently migrate toward wounds and phagocytose bacteria, and the ability to enter the circulation. Thus C/EPB{alpha} is the first known single factor capable of initiating an entire myelopoeisis pathway in pluripotent cells in the embryo.


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