Abstract
An erythropoietic activity that exerts a profound effect on fetal Hb synthesis is present in fetal sheep sera and it attains a peak concentration at the end of the second to the middle of the third trimester of fetal life. The activity consistently inhibits the increased synthesis of fetal Hb in cultures of burst-forming units (BFUes) from normal adults. In cultures of BFUes from homozygous beta+-thalassemias the activity produces a striking decline in gamma chain synthesis, a decline in G gamma/A gamma chain synthesis ratio, and an increase in delta/gamma and alpha/non-alpha ratios--i.e., findings suggesting a genuine gamma-to-beta switch. The activity accelerates Hb F-to-Hb A switching in neonatal BFUe cultures but it has no effect on fetal Hb synthesis in cultures of BFUe obtained from human fetuses. These findings provide direct evidence that (a) humoral factors play a role in the regulation of the switch from fetal to adult Hb formation, and (b) progenitor cells from various stages of ontogeny respond differently to these factors. The results are compatible with the hypothesis that Hb switching during development is mediated through a change in a developmental program which controls the responsiveness of progenitor cells to "switching" activities in their environment.
MeSH Terms
Animals
Animals, Newborn
Blood
Cells, Cultured
Fetal Hemoglobin/biosynthesis
Hematopoiesis
Hemoglobin A/biosynthesis
Humans
Liver/embryology
Sheep
Thalassemia/metabolism
Chemicals
Hemoglobin A
Fetal Hemoglobin
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Papayannopoulou T
Kurachi S
Nakamoto B
Zanjani E D
Stamatoyannopoulos G
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