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纯合致死性黄色小鼠(Ay/Ay)的胚胎致死性与一种新型RNA结合蛋白的破坏有关。

The embryonic lethality of homozygous lethal yellow mice (Ay/Ay) is associated with the disruption of a novel RNA-binding protein.

作者信息

Michaud E J, Bultman S J, Stubbs L J, Woychik R P

机构信息

Biology Division, Oak Ridge National Laboratory, Tennessee 37831-8077.

出版信息

Genes Dev. 1993 Jul;7(7A):1203-13. doi: 10.1101/gad.7.7a.1203.

Abstract

Lethal yellow (Ay) is a mutation at the mouse agouti (a) locus that is associated with an all-yellow coat color, obesity, diabetes, tumors in heterozygotes, and preimplantation embryonic lethality in homozygotes. Previously, we cloned and characterized the wild-type agouti gene and demonstrated that it expresses a 0.8-kb mRNA in neonatal skin. In contrast, Ay expresses a 1.1-kb transcript that is ectopically overexpressed in all tissues examined. The Ay mRNA is identical to the wild-type a transcript for the entire coding region, but the 5'-untranslated sequence of the a gene has been replaced by novel sequence. Here, we demonstrate that the novel 5' sequence in the Ay mRNA corresponds to the 5'-untranslated sequence of another gene that is normally tightly linked to a in mouse chromosome 2. This other gene (Raly) has the potential to encode a novel RNA-binding protein that is normally expressed in the preimplantation embryo, throughout development, and in all adult tissues examined. Importantly, the Ay mutation disrupts the structure and expression of the Raly gene. The data suggest that the Ay mutation arose from a DNA structural alteration that affects the expression of both agouti and Raly. We propose that the dominant pleiotropic effects associated with Ay may result from the ectopic overexpression of the wild-type a gene product under the control of the Raly promoter and that the recessive embryonic lethality may be the result of the lack of Raly gene expression in the early embryo.

摘要

致死性黄色(Ay)是小鼠刺鼠(a)基因座上的一个突变,与全身黄色被毛、肥胖、糖尿病、杂合子中的肿瘤以及纯合子中的植入前胚胎致死性相关。此前,我们克隆并鉴定了野生型刺鼠基因,证明它在新生小鼠皮肤中表达一种0.8 kb的mRNA。相比之下,Ay表达一种1.1 kb的转录本,在所有检测的组织中均异位过表达。Ay mRNA在整个编码区与野生型a转录本相同,但a基因的5'非翻译序列已被新序列取代。在这里,我们证明Ay mRNA中的新5'序列对应于另一个基因的5'非翻译序列,该基因通常与小鼠2号染色体上的a紧密连锁。这个其他基因(Raly)有可能编码一种新的RNA结合蛋白,该蛋白通常在植入前胚胎、整个发育过程以及所有检测的成年组织中表达。重要的是,Ay突变破坏了Raly基因的结构和表达。数据表明,Ay突变源于影响刺鼠和Raly表达的DNA结构改变。我们提出,与Ay相关的显性多效性效应可能是由于野生型a基因产物在Raly启动子控制下的异位过表达,而隐性胚胎致死性可能是早期胚胎中Raly基因表达缺失的结果。

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