Peschle C, Migliaccio A R, Migliaccio G, Petrini M, Calandrini M, Russo G, Mastroberardino G, Presta M, Gianni A M, Comi P
Proc Natl Acad Sci U S A. 1984 Apr;81(8):2416-20. doi: 10.1073/pnas.81.8.2416.
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.
通过分析等电聚焦法,对处于不同发育阶段(即6至10 - 12周龄)的人卵黄囊(YS)和肝脏中胚胎型(ζ、ε)、胎儿型(α、γ)和成体型(β)珠蛋白的合成进行了评估。对珠蛋白的产生在体内(即来自YS和肝脏的直接标记的成红细胞)和体外[即由来自相同造血组织的红系爆式集落形成单位(BFU - E)在培养中产生的红系爆式集落]进行了比较评估。由6周龄肝脏和YS的BFU - E在体外产生的红系爆式集落基本上呈现出“胎儿型”珠蛋白合成模式:这与在体内直接标记的相应肝脏和YS成红细胞中的“胚胎型”模式形成鲜明对比。体外现象表明:(i)6周龄的BFU - E构成了新一代祖细胞,它们已经从胚胎程序切换到胎儿程序,和/或(ii)它们胎儿程序的表达是由未知的体外因子诱导的,这可能是后期发育阶段体内转换的基础。需要强调的是,6至7周龄的BFU - E不仅具有体外合成ε链和γ链的潜力,还具有合成一些β珠蛋白的潜力。一般来说,我们观察到ε链和β链合成水平之间呈负相关。这些结果,连同先前对胎儿、围产期和成体BFU - E的研究,与一些模型相符,这些模型表明在个体发育过程中,染色质构型在非α基因簇水平上逐渐改变,从而以平衡的方式导致珠蛋白基因从5'----3'的激活。