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参与细胞因子受体相互作用的Jak1 N端区域的图谱绘制。

Mapping of a region within the N terminus of Jak1 involved in cytokine receptor interaction.

作者信息

Haan C, Is'harc H, Hermanns H M, Schmitz-Van De Leur H, Kerr I M, Heinrich P C, Grötzinger J, Behrmann I

机构信息

Department of Biochemistry, Rheinisch Westfälische Technische Hochschule Aachen, Pauwelsstr. 30, 52074 Aachen, Germany.

出版信息

J Biol Chem. 2001 Oct 5;276(40):37451-8. doi: 10.1074/jbc.M106135200. Epub 2001 Jul 23.

DOI:10.1074/jbc.M106135200
PMID:11468294
Abstract

Janus kinase 1 (Jak1) is a cytoplasmic tyrosine kinase that noncovalently associates with a variety of cytokine receptors. Here we show that the in vitro translated N-terminal domains of Jak1 are sufficient for binding to a biotinylated peptide comprising the membrane-proximal 73 amino acids of gp130, the signal-transducing receptor chain of interleukin-6-type cytokines. By the fold recognition approach amino acid residues 36-112 of Jak1 were predicted to adopt a beta-grasp fold, and a structural model was built using ubiquitin as a template. Substitution of Tyr(107) to alanine, a residue conserved among Jaks and involved in hydrophobic core interactions of the proposed beta-grasp domain, abrogated binding of full-length Jak1 to gp130 in COS-7 transfectants. By further mutagenesis we identified the loop 4 region of the Jak1 beta-grasp domain as essential for gp130 association and gp130-mediated signal transduction. In Jak1-deficient U4C cells reconstituted with the loop 4 Jak1 mutants L80A/Y81A and Delta(Tyr(81)-Ser(84)), the interferon-gamma, interferon-alpha, and interleukin-6 responses were similarly impaired. Thus, loop 4 of the beta-grasp domain plays a role in the association of Jak1 with both class I and II cytokine receptors. Taken together the structural model and the mutagenesis data provide further insight into the interaction of Janus kinases with cytokine receptors.

摘要

Janus激酶1(Jak1)是一种细胞质酪氨酸激酶,可与多种细胞因子受体非共价结合。在此我们表明,Jak1体外翻译的N端结构域足以与包含gp130膜近端73个氨基酸的生物素化肽结合,gp130是白细胞介素-6型细胞因子的信号转导受体链。通过折叠识别方法,预测Jak1的36-112位氨基酸残基具有β-抓握折叠,并以泛素为模板构建了结构模型。将Tyr(107)替换为丙氨酸,该残基在Jaks中保守且参与所提出的β-抓握结构域的疏水核心相互作用,可消除全长Jak1与COS-7转染细胞中gp130的结合。通过进一步诱变,我们确定Jak1β-抓握结构域的环4区域对于gp130结合和gp130介导的信号转导至关重要。在用环4 Jak1突变体L80A/Y81A和Delta(Tyr(81)-Ser(84))重建的Jak1缺陷型U4C细胞中,干扰素-γ、干扰素-α和白细胞介素-6反应同样受损。因此,β-抓握结构域的环4在Jak1与I类和II类细胞因子受体的结合中起作用。综合结构模型和诱变数据,可进一步深入了解Janus激酶与细胞因子受体的相互作用。

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