Llorens Franc, Roher Nerea, Miró Francesc A, Sarno Stefania, Ruiz F Xavier, Meggio Flavio, Plana Maria, Pinna Lorenzo A, Itarte Emilio
Departament de Bioquímica i Biologia Molecular, Unitat de Bioquímica de Ciències, Universitat Autònoma de Barcelona, Edifici Cs, Campus de Bellaterra, 08193 Bellaterra, Barcelona, Spain.
Biochem J. 2003 Nov 1;375(Pt 3):623-31. doi: 10.1042/BJ20030915.
eIF2 (eukaryotic translation-initiation factor 2) is a substrate and an interacting partner for CK2 (protein kinase CK2). Co-immuno-precipitation of CK2 with eIF2beta has now been observed in HeLa cells, overexpressing haemagglutinin-tagged human recombinant eIF2beta. A direct association between His6-tagged human recombinant forms of eIF2beta subunit and both the catalytic (CK2alpha) and the regulatory (CK2beta) subunits of CK2 has also been shown by using different techniques. Surface plasmon resonance analysis indicated a high affinity in the interaction between eIF2beta and CK2alpha, whereas the affinity for the association with CK2beta is much lower. Free CK2alpha is unable to phosphorylate eIF2beta, whereas up to 1.2 mol of phosphate/mol of eIF2beta was incorporated by the reconstituted CK2 holoenzyme. The N-terminal third part of eIF2beta is dispensable for binding to either CK2alpha or CK2beta, although it contains the phosphorylation sites for CK2. The remaining central/C-terminal part of eIF2beta is not phosphorylated by CK2, but is sufficient for binding to both CK2 subunits. The presence of eIF2beta inhibited CK2alpha activity on calmodulin and beta-casein, but it had a minor effect on that of the reconstituted CK2 holoenzyme. The truncated forms corresponding to the N-terminal or central/C-terminal regions of eIF2beta were much less inhibitory than the intact subunit. The results demonstrate that the ability to associate with CK2 subunits and to serve as a CK2 substrate are confined to different regions in eIF2beta and that it may act as an inhibitor on CK2alpha.
真核生物翻译起始因子2(eIF2)是蛋白激酶CK2的底物及相互作用伴侣。现已在过表达血凝素标记的人重组eIF2β的HeLa细胞中观察到CK2与eIF2β的共免疫沉淀。通过不同技术还表明,His6标记的人重组形式的eIF2β亚基与CK2的催化亚基(CK2α)和调节亚基(CK2β)之间存在直接关联。表面等离子体共振分析表明,eIF2β与CK2α之间的相互作用具有高亲和力,而与CK2β结合的亲和力则低得多。游离的CK2α无法磷酸化eIF2β,而重组的CK2全酶可使每摩尔eIF2β掺入多达1.2摩尔的磷酸盐。eIF2β的N端三分之一部分对于与CK2α或CK2β的结合并非必需,尽管它含有CK2的磷酸化位点。eIF2β其余的中央/ C端部分不会被CK2磷酸化,但足以与CK2的两个亚基结合。eIF2β的存在抑制了CK2α对钙调蛋白和β-酪蛋白的活性,但对重组的CK2全酶的活性影响较小。对应于eIF2βN端或中央/ C端区域的截短形式的抑制作用远小于完整亚基。结果表明,与CK2亚基结合并作为CK2底物的能力局限于eIF2β的不同区域,并且它可能作为CK2α的抑制剂。