Gao Tianyan, Newton Alexandra C
Department of Pharmacology, University of California at San Diego, 9500 Gilman Drive, La Jolla, CA 92093, USA.
J Biol Chem. 2006 Oct 27;281(43):32461-8. doi: 10.1074/jbc.M604076200. Epub 2006 Sep 5.
Heat shock proteins play important roles in regulating signal transduction in cells by associating with, and stabilizing, diverse signaling molecules, including protein kinases. Previously, we have shown that heat shock protein Hsp70 associates with protein kinase C (PKC) via an interaction that is triggered by dephosphorylation at the turn phosphorylation motif. Here we have identified an invariant residue in the carboxyl terminus of PKC that mediates the binding to Hsp70. Specifically, we show that Hsp70 binds to Leu (Leu-640) immediately preceding the conserved turn motif autophosphorylation site (Thr-641) in PKC betaII. Co-immunoprecipitation experiments reveal that mutation of Leu-640 to Gly decreases the interaction of Hsp70 with PKC betaII. This weakened interaction between Hsp70 and the mutant PKCs results in accumulation of dephosphorylated PKC in the detergent-insoluble fraction of cells. In addition, the Hsp70-binding mutant is considerably more sensitive to down-regulation compared with WT PKC: disruption of Hsp70 binding leads to accelerated dephosphorylation and enhanced ubiquitination of mutant PKC upon phorbol ester treatment. Last, pulse-chase experiments demonstrate that Hsp70 preferentially binds the species of mature PKC that has become dephosphorylated compared with the newly synthesized protein that has yet to be phosphorylated. Thus, Hsp70 binds a hydrophobic residue preceding the turn motif, protecting PKC from down-regulation and sustaining the signaling lifetime of the kinase.
热休克蛋白通过与包括蛋白激酶在内的多种信号分子结合并使其稳定,在调节细胞信号转导中发挥重要作用。此前,我们已经表明热休克蛋白Hsp70通过在转角磷酸化基序处去磷酸化触发的相互作用与蛋白激酶C(PKC)结合。在此,我们在PKC的羧基末端鉴定出一个不变残基,该残基介导与Hsp70的结合。具体而言,我们表明Hsp70与PKCβII中保守的转角基序自磷酸化位点(Thr-641)之前紧邻的Leu(Leu-640)结合。免疫共沉淀实验表明,Leu-640突变为Gly会降低Hsp70与PKCβII的相互作用。Hsp70与突变型PKC之间这种减弱的相互作用导致去磷酸化的PKC在细胞去污剂不溶性部分中积累。此外,与野生型PKC相比,Hsp70结合突变体对下调更为敏感:Hsp70结合的破坏导致佛波酯处理后突变型PKC的去磷酸化加速和泛素化增强。最后,脉冲追踪实验表明,与尚未磷酸化的新合成蛋白相比,Hsp70优先结合已去磷酸化的成熟PKC。因此,Hsp70结合转角基序之前的一个疏水残基,保护PKC免于下调并维持激酶的信号转导寿命。