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Elsaid, R.

Publications and source records attributed to Elsaid, R..

2 recordsLinked to original sources

Yolk sac erythromyeloid progenitors sustain erythropoiesis throughout embryonic life

The first hematopoietic cells are produced in the yolk sac and are thought to be rapidly replaced by the progeny of hematopoietic stem cells. Here we document that hematopoietic stem cells do not contribute significantly to erythrocyte production up until birth. Lineage tracing of yolk sac-derived erythromyeloid progenitors, that also contribute to tissue resident macrophages, shows a progeny of highly proliferative erythroblasts, that after intra embryonic injection, rapidly differentiate. These progenitors, similar to hematopoietic stem cells, are c-Myb dependent and are developmentally restricted as they are not found in the bone marrow. We show that erythrocyte progenitors of yolk sac origin require lower concentrations of erythropoietin than their hematopoietic stem cell-derived counterparts for efficient erythrocyte production. Consequently, fetal liver hematopoietic stem cells fail to generate megakaryocyte and erythrocyte progenitors. We propose that large numbers of yolk sac-derived erythrocyte progenitors have a selective advantage and efficiently outcompete hematopoietic stem cell progeny in an environment with limited availability of erythropoietin.

developmental biology

A wave of hematopoietic stem cell-derived T/ILC-restricted progenitors initiates thymopoiesis and shapes the embryonic thymus architecture.

Multiple waves of hematopoietic progenitors with distinct lineage potentials are differentially regulated in time and space. We show that the first thymic seeding progenitors comprise a unique population of bipotent cells that generate lymphoid tissue inducer and invariant V{gamma}5+ T cells. Both populations are of embryonic origin and induce the maturation of medullary thymic epithelial cells. Indeed, temporal depletion of the first wave of thymocytes results in a five-fold reduction of mature medullary thymic epithelial cells, after birth. We further show that these progenitors are of hematopoietic stem cell, and not, of yolk sac origin, despite the temporal overlap between the onset of lymphopoiesis and the transient expression of lymphoid transcripts in yolk sac precursors, that does not impact their strict erythro-myeloid potential. Our work highlights the relevance of the developmental timing on the emergence of different lymphoid subsets required for the establishment of a functionally diverse immune system.

immunology