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果蝇SNF/D25结合了在人类、马铃薯和酵母中分别编码的两种snRNP蛋白U1A和U2B'的功能。

Drosophila SNF/D25 combines the functions of the two snRNP proteins U1A and U2B' that are encoded separately in human, potato, and yeast.

作者信息

Polycarpou-Schwarz M, Gunderson S I, Kandels-Lewis S, Seraphin B, Mattaj I W

机构信息

European Molecular Biology Laboratory, Heidelberg, Germany.

出版信息

RNA. 1996 Jan;2(1):11-23.

Abstract

The plant and vertebrate snRP proteins U1A and U2B' are structurally closely related, but bind to different U snRNAs. Two additional related snRNP proteins, the yeast U2B' protein and Drosophila SNF/D25 protein, are analyzed here. We show that the previously described yeast open reading frame YIB9w encodes yeast U2B' as judged by the fact that the protein encoded by YIB9w bindsto stem-loop IV of yeast U2 snRNA in vitro and is part of the U2 snRNP in vivo. In contrast to the human U2B' protein, specific binding of yeast U2B' to RNA in vitro can occur in the absence of an accessory U2A' protein. The Drosophila SNF-D25 protein, unlike all other U1A/U2B' proteins studied to date, is shown to be a component of both U1 and U2 snRNPs. In vitro, SNF/D25 binds to U1 snRNA on itsown and to U2 snRNA in the presence of either the human U2A' protein or of Drosophila nuclear extract. Thus, its RNA-binding properties are the sum of those exhibited by human or potato U1A and U2B' proteins. Implications for the role of SNF/D25 in alternative splicing, and for the evolution of the U1A/U2B' protein family, are discussed.

摘要

植物和脊椎动物的snRP蛋白U1A和U2B’在结构上密切相关,但它们与不同的U snRNA结合。本文分析了另外两种相关的snRNP蛋白,即酵母U2B’蛋白和果蝇SNF/D25蛋白。我们发现,先前描述的酵母开放阅读框YIB9w编码酵母U2B’,这是基于YIB9w编码的蛋白在体外能与酵母U2 snRNA的茎环IV结合且在体内是U2 snRNP的一部分这一事实判断得出的。与人类U2B’蛋白不同,酵母U2B’在体外能在没有辅助性U2A’蛋白的情况下与RNA发生特异性结合。果蝇SNF-D25蛋白与迄今为止研究的所有其他U1A/U2B’蛋白不同,它被证明是U1和U2 snRNP的组成成分。在体外,SNF/D25自身能与U1 snRNA结合,在存在人类U2A’蛋白或果蝇核提取物的情况下能与U2 snRNA结合。因此,其RNA结合特性是人类或马铃薯U1A和U2B’蛋白所表现出的特性之和。本文还讨论了SNF/D25在可变剪接中的作用以及U1A/U2B’蛋白家族的进化。

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