Polyak S J, Tang N, Wambach M, Barber G N, Katze M G
Department of Microbiology, School of Medicine, University of Washington, Seattle 98195, USA.
J Biol Chem. 1996 Jan 19;271(3):1702-7. doi: 10.1074/jbc.271.3.1702.
The 58-kDa protein, referred to as P58, is a cellular inhibitor of the interferon-induced, double-stranded RNA-activated protein kinase, PKR. The P58 protein inhibits both the autophosphorylation of PKR and the phosphorylation of the PKR natural substrate, the alpha subunit of eukaryotic initiation factor eIF-2. Sequence analysis revealed that P58 is a member of the tetratricopeptide family of proteins. Utilizing experimental approaches, which included coprecipitation or coselection of native and recombinant wild-type and mutant proteins, we found that P58 can efficiently complex with the PKR protein kinase. Attempts to map the P58 interactive sites revealed a correlation between the ability of P58 to inhibit PKR in vitro and bind to PKR. The DnaJ sequences, present at the carboxyl terminus of P58, were dispensable for binding in vitro, while sequences containing the eIF-2 alpha similarity region were essential for efficient complex formation. Furthermore, not all tetratricopeptide motifs were necessary for PKR-P58 interactions. Initial experiments to map the binding domains present in PKR showed that P58 complexed with PKR molecules that lacked the first RNA binding domain but did not bind to a PKR mutant containing only the amino terminus. These data, taken together, demonstrate that P58 inhibits PKR through a direct interaction, which is likely independent of the binding of double-stranded RNA to the protein kinase.
58千道尔顿的蛋白质,称为P58,是干扰素诱导的双链RNA激活蛋白激酶PKR的细胞抑制剂。P58蛋白既抑制PKR的自磷酸化,也抑制PKR天然底物——真核起始因子eIF-2的α亚基的磷酸化。序列分析表明,P58是四肽重复蛋白家族的成员。利用包括天然和重组野生型及突变蛋白的共沉淀或共选择在内的实验方法,我们发现P58能与PKR蛋白激酶有效结合。绘制P58相互作用位点的尝试揭示了P58在体外抑制PKR的能力与结合PKR之间的相关性。P58羧基末端存在的DnaJ序列在体外结合中并非必需,而包含eIF-2α相似区域的序列对于有效形成复合物至关重要。此外,并非所有四肽重复基序对于PKR-P58相互作用都是必需的。初步绘制PKR中结合结构域的实验表明,P58与缺乏第一个RNA结合结构域的PKR分子结合,但不与仅含氨基末端的PKR突变体结合。综合这些数据表明,P58通过直接相互作用抑制PKR,这可能独立于双链RNA与蛋白激酶的结合。