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Haemoglobin switching in human embryos: asynchrony of ζ → α and ε → γ-globin switches in primitive and definitive erythropoietic lineage

Authors :
G. Mastroberardino
R Guerriero
Marino Marinucci
Anna Rita Migliaccio
Cesare Peschle
Paola Samoggia
Alessandra Carè
S Petti
Giovanni Migliaccio
Giuseppe Russo
Damiana Lazzaro
Fulvio Mavilio
G. Salvo
Source :
Nature. 313:235-238
Publication Year :
1985
Publisher :
Springer Science and Business Media LLC, 1985.

Abstract

Haemoglobin switching in humans provides a unique model for investigating the mechanisms underlying expression of a developmentally regulated gene family. Numerous studies have focused on the switch from fetal to adult (that is, gamma----beta) globin, but little is known about the embryonic----fetal (that is, zeta----alpha and epsilon----gamma) switches, as well as the transition from 'primitive' yolk sac to 'definitive' liver erythropoiesis. Here we have studied the embryonic----fetal haemoglobin switches in yolk sac, liver and circulating blood erythroblasts from 25 embryos and 6 fetuses. Globin synthesis was also evaluated in purified 'primitive' and 'definitive' erythroblasts. Primitive erythroblasts synthesize essentially zeta and epsilon chains at 5 weeks and alpha- and epsilon-globin with a minor aliquot of zeta and gamma chains at 6-7 weeks, whereas definitive erythroblasts produce alpha and epsilon + gamma + beta-globin at 6 weeks but only alpha and gamma + beta chains from 8 weeks onward. In both lineages the zeta----alpha and the epsilon----gamma switches are asynchronous, the former preceding the latter. Furthermore, zeta- and beta-globin synthesis is restricted to primitive and definitive erythroblasts respectively. These findings are discussed in terms of a monoclonal model for haemoglobin switching in early human ontogeny.

Details

ISSN :
14764687 and 00280836
Volume :
313
Database :
OpenAIRE
Journal :
Nature
Accession number :
edsair.doi.dedup.....f89ba523309df2012bb91c8838ebba28
Full Text :
https://doi.org/10.1038/313235a0