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小鼠ζ-珠蛋白基因和α-珠蛋白基因:胚胎存活、α地中海贫血及遗传背景效应

Mouse zeta- and alpha-globin genes: embryonic survival, alpha-thalassemia, and genetic background effects.

作者信息

Leder A, Daugherty C, Whitney B, Leder P

机构信息

Department of Genetics, Harvard Medical School, Howard Hughes Medical Institute, Boston, MA 02115, USA.

出版信息

Blood. 1997 Aug 1;90(3):1275-82.

PMID:9242562
Abstract

A classical notion regarding the expression of murine embryonic zeta- and adult alpha-globin genes holds that there is a switch in globin production from the embryonic to the adult form during fetal development. Our previous in situ hybridization studies challenged this view, since both zeta- and alpha-globin mRNAs can be detected simultaneously in the earliest erythrocyte populations. This finding raises the possibility that zeta-globin production might be wholly or partially redundant in embryos in which the adult alpha-globin is also expressed. To test this possibility, we created a null mutation of the zeta-globin gene using homologous recombination in embryonic stem cells. Many outbred mice homozygous for the zeta-null mutation were able to develop normally, undermining the notion that there is an absolute need for zeta-globin and indicating that alpha-globin alone can serve the survival needs of the fetus. Interestingly, insertion of the PGK-Neo cassette (used to create the null mutation) into the zeta-globin gene appears to influence the expression of the nearby alpha-globin genes, giving rise to reduced alpha-globin production and to an alpha-thalassemia-like syndrome. There is also evidence indicating the strong influence of genetic background on the zeta-null and alpha1-null phenotypes, both of which are much more severe in the 129/SvEv inbred genetic background. These quantitative differences can potentially be exploited to identify genes important for erythropoiesis.

摘要

关于小鼠胚胎ζ-珠蛋白和成年α-珠蛋白基因表达的一个经典观点认为,在胎儿发育过程中,珠蛋白的产生会从胚胎形式转换为成年形式。我们之前的原位杂交研究对这一观点提出了挑战,因为在最早的红细胞群体中可以同时检测到ζ-珠蛋白和α-珠蛋白的mRNA。这一发现增加了一种可能性,即在成年α-珠蛋白也表达的胚胎中,ζ-珠蛋白的产生可能全部或部分是多余的。为了验证这种可能性,我们利用胚胎干细胞中的同源重组创建了ζ-珠蛋白基因的无效突变。许多纯合ζ-珠蛋白无效突变的远交系小鼠能够正常发育,这削弱了对ζ-珠蛋白绝对需求的观念,并表明仅α-珠蛋白就能满足胎儿的生存需求。有趣的是,将PGK-Neo盒(用于创建无效突变)插入ζ-珠蛋白基因似乎会影响附近α-珠蛋白基因的表达,导致α-珠蛋白产生减少,并引发类似α-地中海贫血的综合征。也有证据表明遗传背景对ζ-珠蛋白无效和α1-珠蛋白无效表型有强烈影响,在129/SvEv近交遗传背景中,这两种表型都要严重得多。这些数量上的差异可能被用于识别对红细胞生成重要的基因。

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