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Stat2蛋白在α干扰素介导的转录激活中的作用。

Function of Stat2 protein in transcriptional activation by alpha interferon.

作者信息

Qureshi S A, Leung S, Kerr I M, Stark G R, Darnell J E

机构信息

Laboratory of Molecular Cell Biology, Rockefeller University, New York, New York 10021, USA.

出版信息

Mol Cell Biol. 1996 Jan;16(1):288-93. doi: 10.1128/MCB.16.1.288.

Abstract

Alpha interferon (IFN-alpha)-induced transcriptional activation requires the induction of a complex of DNA-binding proteins, including tyrosine-phosphorylated Stat1 and Stat2, and of p48, a protein which is not phosphorylated on tyrosine and which comes from a separate family of DNA-binding proteins. The isolation and characterization of U6A cells, which lack Stat2, have allowed the introduction of normal and mutant forms of Stat2 so that various functions of the Stat2 protein can be examined. As reported earlier, Stat1, which is the second target of tyrosine phosphorylation in IFN-alpha-treated cells, is not phosphorylated in the absence of Stat2. We show that all mutations that block Stat2 phosphorylation also block Stat1 phosphorylation. These include not only the mutations of Y-690 and SH2 domain residues that are involved in tyrosine phosphorylation but also short deletions at the amino terminus of the protein. Two mutants of Stat2 that are not phosphorylated on tyrosine can act as dominant negative proteins in suppressing wild-type Stat2 phosphorylation, most likely by competition at the receptor-kinase interaction site(s). We also show that the COOH-terminal 50 amino acids are required for transcriptional activation in response to IFN-alpha. Mutants lacking these amino acids can be phosphorylated, form IFN-stimulated gene factor 3, and translocate to the nucleus but cannot stimulate IFN-alpha-dependent transcription. Seven acidic residues are present in the deleted COOH-terminal residues, but 24 acidic residues still remain in the 100 carboxy-terminal amino acids after deletion. Thus, transcriptional activation is unlikely to depend on acidic amino acids alone.

摘要

α干扰素(IFN-α)诱导的转录激活需要诱导一种DNA结合蛋白复合物,包括酪氨酸磷酸化的Stat1和Stat2,以及p48,一种酪氨酸未磷酸化且来自独立DNA结合蛋白家族的蛋白质。缺乏Stat2的U6A细胞的分离和特性分析,使得能够引入正常和突变形式的Stat2,从而可以研究Stat2蛋白的各种功能。如先前报道,Stat1是IFN-α处理细胞中酪氨酸磷酸化的第二个靶点,在没有Stat2的情况下不会被磷酸化。我们发现,所有阻断Stat2磷酸化的突变也会阻断Stat1磷酸化。这些突变不仅包括参与酪氨酸磷酸化的Y-690和SH2结构域残基的突变,还包括该蛋白氨基末端的短缺失。两个酪氨酸未磷酸化的Stat2突变体可以作为显性负性蛋白抑制野生型Stat2磷酸化,最有可能是通过在受体激酶相互作用位点的竞争。我们还表明,响应IFN-α进行转录激活需要COOH末端的50个氨基酸。缺乏这些氨基酸的突变体可以被磷酸化,形成IFN刺激基因因子3,并转运到细胞核,但不能刺激IFN-α依赖性转录。在缺失的COOH末端残基中有七个酸性残基,但缺失后100个羧基末端氨基酸中仍有24个酸性残基。因此,转录激活不太可能仅依赖于酸性氨基酸。

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