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翻译抗终止作用对人α-珠蛋白mRNA的去稳定作用在红细胞分化过程中受到调控,并且与多聚腺苷酸尾的阶段性缩短同时发生。

Destabilization of human alpha-globin mRNA by translation anti-termination is controlled during erythroid differentiation and is paralleled by phased shortening of the poly(A) tail.

作者信息

Morales J, Russell J E, Liebhaber S A

机构信息

Howard Hughes Medical Institute, University of Pennsylvania School of Medicine, Philadelphia, Pennsylvania 19104, USA.

出版信息

J Biol Chem. 1997 Mar 7;272(10):6607-13. doi: 10.1074/jbc.272.10.6607.

Abstract

The extraordinary stability of globin mRNAs permits their accumulation to over 95% of total cellular mRNA during erythroid differentiation. The stability of human alpha-globin mRNA correlates with assembly of a sequence-specific ribonucleoprotein complex at its 3'-untranslated region. A naturally occurring anti-termination mutation, Constant Spring (CS), which permits ribosomes to enter the 3'-untranslated region of the alpha-globin mRNA, results in accelerated mRNA decay. To study the mechanism of this destabilization in vivo, we established transgenic mouse lines carrying the human alphaCS gene. Relative to wild-type human alpha-globin mRNA (alphawt), alphaCS mRNA is destabilized in marrow erythroid cells. The poly(A) tails of both the alphaCS and alphawt mRNAs show a periodicity of 20-25 nucleotides consistent with phased binding of poly(A) binding proteins. However, the mean size of poly(A) tails of the unstable alphaCS mRNA is significantly shorter than that of the alphawt mRNA. Unexpectedly, the alphawt and alphaCS mRNAs are of equal stability in peripheral reticulocytes, where their respective poly(A) tails shorten coordinately. These findings demonstrate a characteristic organization of the poly(A) tail on alpha-globin mRNA which is maintained during normal and accelerated decay, a correlation between poly(A) metabolism and anti-termination-mediated accelerated mRNA turnover, and a switch in the mechanism of mRNA decay during erythroid terminal differentiation.

摘要

珠蛋白mRNA的非凡稳定性使其在红细胞分化过程中能累积至占细胞总mRNA的95%以上。人α-珠蛋白mRNA的稳定性与其3'-非翻译区序列特异性核糖核蛋白复合物的组装相关。一种天然存在的抗终止突变,即恒定弹簧(CS)突变,它使核糖体能够进入α-珠蛋白mRNA的3'-非翻译区,导致mRNA加速降解。为了在体内研究这种去稳定化机制,我们建立了携带人αCS基因的转基因小鼠品系。相对于野生型人α-珠蛋白mRNA(αwt),αCS mRNA在骨髓红细胞中不稳定。αCS和αwt mRNA的聚腺苷酸尾均呈现出20 - 25个核苷酸的周期性,这与聚腺苷酸结合蛋白的阶段性结合一致。然而,不稳定的αCS mRNA的聚腺苷酸尾平均长度明显短于αwt mRNA。出乎意料的是,αwt和αCS mRNA在外周网织红细胞中的稳定性相同,在那里它们各自的聚腺苷酸尾会协同缩短。这些发现证明了α-珠蛋白mRNA上聚腺苷酸尾的特征性组织在正常和加速降解过程中得以维持,聚腺苷酸代谢与抗终止介导的mRNA加速周转之间存在关联,以及在红细胞终末分化过程中mRNA降解机制的转变。

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