Tegethoff Sebastian, Behlke Joachim, Scheidereit Claus
Cell Growth and Differentiation Program, Max Delbrück Center for Molecular Medicine, Robert-Rössle-Strasse 10, 13092 Berlin, Germany.
Mol Cell Biol. 2003 Mar;23(6):2029-41. doi: 10.1128/MCB.23.6.2029-2041.2003.
The IkappaB kinase (IKK) complex mediates activation of transcription factor NF-kappaB by phosphorylation of IkappaB proteins. Its catalytic subunits, IKKalpha and IKKbeta, require association with the regulatory IKKgamma (NEMO) component to gain full basal and inducible kinase activity. However, the oligomeric composition of the IKK complex and its regulation by IKKgamma are poorly understood. We show here that IKKgamma predominantly forms tetramers and interacts with IKKalpha or IKKbeta in this state. We propose that tetramerization is accomplished by a prerequisite dimerization through a C-terminal coiled-coil minimal oligomerization domain (MOD). This is followed by dimerization of the dimers with their N-terminal sequences. Tetrameric IKKgamma sequesters four kinase molecules, yielding a gamma(4)(alpha/beta)(4) stoichiometry. Deletion of the MOD leads to loss of tetramerization and of phosphorylation of IKKbeta and IKKgamma, although the kinase can still interact with the resultant IKKgamma monomers and dimers. Likewise, MOD-mediated IKKgamma tetramerization is required to enhance IKKbeta kinase activity when overexpressed in 293 cells and to reconstitute a lipopolysaccharide-responsive IKK complex in pre-B cells. These data thus suggest that IKKgamma tetramerization enforces a spatial positioning of two kinase dimers to facilitate transautophosphorylation and activation.
IκB激酶(IKK)复合物通过IκB蛋白的磷酸化介导转录因子NF-κB的激活。其催化亚基IKKα和IKKβ需要与调节性IKKγ(NEMO)组分结合,以获得完全的基础和诱导性激酶活性。然而,IKK复合物的寡聚体组成及其受IKKγ的调节仍知之甚少。我们在此表明,IKKγ主要形成四聚体,并在这种状态下与IKKα或IKKβ相互作用。我们提出,四聚化是通过一个C末端卷曲螺旋最小寡聚化结构域(MOD)进行必要的二聚化来完成的。随后,二聚体通过其N末端序列进行二聚化。四聚体IKKγ隔离四个激酶分子,产生γ(4)(α/β)(4)的化学计量。删除MOD会导致四聚化丧失以及IKKβ和IKKγ的磷酸化丧失,尽管激酶仍可与产生的IKKγ单体和二聚体相互作用。同样,当在293细胞中过表达时,MOD介导的IKKγ四聚化对于增强IKKβ激酶活性以及在pre-B细胞中重建脂多糖反应性IKK复合物是必需的。因此,这些数据表明IKKγ四聚化强制两个激酶二聚体进行空间定位,以促进反式自磷酸化和激活。