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IKK-γ是IκB激酶复合物的一个必需调节亚基。

IKK-gamma is an essential regulatory subunit of the IkappaB kinase complex.

作者信息

Rothwarf D M, Zandi E, Natoli G, Karin M

机构信息

Department of Pharmacology, University of California San Diego, La Jolla 92093-0636, USA.

出版信息

Nature. 1998 Sep 17;395(6699):297-300. doi: 10.1038/26261.

Abstract

Pro-inflammatory cytokines activate the transcription factor NF-kappaB by stimulating the activity of a protein kinase that phosphorylates IkappaB, an inhibitor of NF-kappaB, at sites that trigger its ubiquitination and degradation. This results in the nuclear translocation of freed NF-kappaB dimers and the activation of transcription of target genes. Many of these target genes code for immunoregulatory proteins. A large, cytokine-responsive IkappaB kinase (IKK) complex has been purified and the genes encoding two of its subunits have been cloned. These subunits, IKK-alpha and IKK-beta, are protein kinases whose function is needed for NF-kappaB activation by pro-inflammatory stimuli. Here, by using a monoclonal antibody against IKK-alpha, we purify the IKK complex to homogeneity from human cell lines. We find that IKK is composed of similar amounts of IKK-alpha, IKK-beta and two other polypeptides, for which we obtained partial sequences. These polypeptides are differentially processed forms of a third subunit, IKK-gamma. Molecular cloning and sequencing indicate that IKK-gamma is composed of several potential coiled-coil motifs. IKK-gamma interacts preferentially with IKK-beta and is required for the activation of the IKK complex. An IKK-gamma carboxy-terminal truncation mutant that still binds IKK-beta blocks the activation of IKK and NF-kappaB.

摘要

促炎细胞因子通过刺激一种蛋白激酶的活性来激活转录因子NF-κB,该蛋白激酶使NF-κB的抑制剂IκB在触发其泛素化和降解的位点发生磷酸化。这导致游离的NF-κB二聚体发生核转位并激活靶基因的转录。这些靶基因中的许多编码免疫调节蛋白。一种大型的、细胞因子反应性IκB激酶(IKK)复合物已被纯化,其两个亚基的编码基因也已被克隆。这些亚基,IKK-α和IKK-β,是蛋白激酶,其功能是促炎刺激激活NF-κB所必需的。在这里,我们使用抗IKK-α的单克隆抗体,从人细胞系中纯化出均一的IKK复合物。我们发现IKK由等量的IKK-α、IKK-β和另外两种多肽组成,我们获得了它们的部分序列。这些多肽是第三个亚基IKK-γ的不同加工形式。分子克隆和测序表明IKK-γ由几个潜在的卷曲螺旋基序组成。IKK-γ优先与IKK-β相互作用,是IKK复合物激活所必需的。一个仍与IKK-β结合的IKK-γ羧基末端截短突变体可阻断IKK和NF-κB的激活。

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