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PMID: 6201856 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Embryonic----Fetal Hb switch in humans: studies on erythroid bursts generated by embryonic progenitors from yolk sac and liver.

Peschle C, Migliaccio AR, Migliaccio G, Petrini M, Calandrini M, Russo G, Mastroberardino G, Presta M, Gianni AM, Comi P

Abstract

The synthesis of embryonic (zeta, epsilon), fetal (alpha, gamma), and adult (beta) globin was evaluated in human yolk sacs (YS) and livers at different ontogenic stages (i.e., from 6 through 10-12 wk of age) by means of analytical isoelectric focusing. Globin production was comparatively evaluated in vivo (i.e., in directly labeled erythroblasts from YS and liver) and in vitro [i.e., in erythroid bursts generated in culture by erythroid burst-forming units (BFU-E) from the same erythropoietic tissues]. Erythroid bursts generated in vitro by BFU-E from 6-wk livers and YS show essentially a "fetal" globin synthetic pattern: this is in sharp contrast to the "embryonic" pattern in corresponding liver and YS erythroblasts directly labeled in vivo. The invitro phenomenon suggests that (i) 6-wk BFU-E constitute a new generation of progenitors, which have already switched from an embryonic to a fetal program, and/or (ii) expression of their fetal program is induced by unknown in vitro factor(s), which may underlie the in vivo switch at later ontogenic stages. It is emphasized that 6- to 7-wk BFU-E are endowed with the potential for in vitro synthesis of not only epsilon- and gamma-chains but also some beta-globin. In general, we observed an inverse correlation between the levels of epsilon- and beta-chain synthesis. These results, together with previous studies on fetal, perinatal, and adult BFU-E, are compatible with models suggesting that in ontogeny the chromatin configuration is gradually modified at the level of the non-alpha gene cluster, thus leading to a 5'----3' activation of globin genes in a balanced fashion.

MeSH Terms
Embryo, Mammalian Erythroblasts/metabolism Female Fetal Hemoglobin/biosynthesis,isolation & purification Fetus Globins/biosynthesis Hemoglobin A/biosynthesis,isolation & purification Humans Liver/embryology,metabolism Pregnancy Yolk Sac/metabolism
Chemicals
Globins Hemoglobin A Fetal Hemoglobin
Authors & Affiliations
10 authors, click to expand affiliations / ORCID
Peschle C
Migliaccio A R
Migliaccio G
Petrini M
Calandrini M
Russo G
Mastroberardino G
Presta M
Gianni A M
Comi P
References (18)
18 references, click to expand
  1. G gamma and A gamma globin-chain biosynthesis by adult and umbilical cord blood erythropoietic bursts and reticulocytes.
    Blood. 1980 Jul;56(1):93-7 PMID: 7388184
  2. Molecular mechanisms of human hemoglobin switching: selective undermethylation and expression of globin genes in embryonic, fetal, and adult erythroblasts.
    Proc Natl Acad Sci U S A. 1983 Nov;80(22):6907-11 PMID: 6316333
  3. Adult hemoglobins are synthesized in erythroid colonies in vitro derived from murine circulating hemopoietic progenitor cells during embryonic development.
    Proc Natl Acad Sci U S A. 1982 May;79(9):2952-6 PMID: 6953440
  4. In vitro induction of adult erythropoiesis in early mouse yolk sac.
    Proc Natl Acad Sci U S A. 1981 Apr;78(4):2412-6 PMID: 6941301
  5. Hemoglobin synthesis in individual bursts from normal adult blood: all bursts and subcolonies synthesize G gamma-and A gamma-globin chains.
    Blood. 1980 Aug;56(2):218-26 PMID: 6156727
  6. Human embryonic haemoglobins Gower 1 and Gower 2.
    Nature. 1979 Jul 12;280(5718):162-4 PMID: 95353
  7. Biosynthesis of Hb in individual fetal liver bursts. gamma-Chain production peaks earlier than beta-chain in the erythropoietic pathway.
    Exp Cell Res. 1980 Dec;130(2):345-52 PMID: 6161020
  8. Adult hemoglobin synthesis by reticulocytes from the human fetus at midtrimester.
    Science. 1971 Nov 12;174(4010):698-702 PMID: 5123417
  9. Hemoglobin switching in culture: evidence for a humoral factor that induces switching in adult and neonatal but not fetal erythroid cells.
    Proc Natl Acad Sci U S A. 1982 Nov;79(21):6579-83 PMID: 6183666
  10. The properties and reactions of haemoglobin F(1) and their bearing on the dissociation equilibrium of haemoglobin.
    Biochem J. 1966 Dec;101(3):852-60 PMID: 16742466
  11. HbF and HbA production in erythroid cultures from human fetuses and neonates.
    Blood. 1979 Aug;54(2):440-50 PMID: 454849
  12. Preferential induction of fetal versus embryonic globin chains in human leukemic cell lines.
    Leuk Res. 1982;6(2):155-63 PMID: 6193375
  13. Two new haemoglobin variants in a very young human embryo.
    Nature. 1961 Feb 11;189:496-7 PMID: 13716547
  14. Globin chain synthesis in single erythroid bursts from cord blood: studies on gamma leads to beta and G gamma leads to A gamma switches.
    Proc Natl Acad Sci U S A. 1980 Jan;77(1):362-5 PMID: 6153796
  15. Cellular mechanisms for increased fetal hemoglobin production in culture. Evidence for continuous commitment to fetal hemoglobin production during burst formation.
    J Clin Invest. 1980 Nov;66(5):1175-8 PMID: 6159367
  16. Predominance of hemoglobin Gower 1 in early human embryonic development.
    Science. 1966 Apr 1;152(3718):91-2 PMID: 5948690
  17. Identification and characterization of three classes of erythroid progenitors in human fetal liver.
    Blood. 1981 Sep;58(3):565-72 PMID: 7259837
  18. Analysis of human embryonic hemoglobins and globins by isoelectric focusing.
    Haematologica. 1983 Jul-Aug;68(4):443-53 PMID: 6414895
Article Info
Journal
Proceedings of the National Academy of Sciences of the United States of America
Abbr.
Proc Natl Acad Sci U S A
ISSN
0027-8424
Published
1984-04-00
Pages
2416-20
Language
English
Region
United States
NLM ID
7505876
PMCID
PMC345071
Subset
IM
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