Le Good J Ann, Brindley David N
Signal Transduction Research Group and Department of Biochemistry, University of Alberta, 357 Heritage Medical Research Centre, Edmonton, Alberta T6G 2S2, Canada.
Biochem J. 2004 Feb 15;378(Pt 1):83-92. doi: 10.1042/BJ20031194.
The regulation of protein kinase C (PKC)zeta in relation to its turnover, cell growth and transformation was investigated in Rat2 fibroblasts by over-expressing wild-type or mutant forms of PKCzeta. Deletion of the pseudosubstrate site (PSS) produced the most active mutant (PKCzeta Delta PSS), but mutants designed to mimic phosphorylated PKCzeta had lower specific activities in an in vitro assay. The mutant lacking phosphorylation at the Thr-560 site (T560A) had similar specific activity to wild-type PKCzeta. The T560A mutant also protected PKCzeta against proteolysis, whereas phosphorylation at Thr-410 targeted it towards proteosomal degradation. Blocking proteosomal degradation with lactacystin caused the accumulation of full-length PKCzeta Delta PSS, T410E, PKCzeta Delta PSS T410/560E, PKCzeta and T560A. Expressed PKCzeta activity was paralleled by extracellular-regulated protein kinase activation, increased cell division, serum-independent growth and focus formation. These foci were seen for cells expressing higher PKCzeta activity (PKCzeta Delta PSS, PKCzeta Delta PSS T410/560E and T560A mutants), but these fibroblasts did not show significant anchorage-independent growth. This work provides novel information concerning the role of the PSS and phosphorylation sites in regulating the activity and turnover of an atypical PKC and shows how this activity can induce cell transformation with respect to focus formation.
通过过表达野生型或突变形式的蛋白激酶C(PKC)ζ,在大鼠2成纤维细胞中研究了PKCζ与其周转、细胞生长和转化的关系。假底物位点(PSS)的缺失产生了活性最高的突变体(PKCζΔPSS),但设计用于模拟磷酸化PKCζ的突变体在体外测定中具有较低的比活性。缺乏苏氨酸-560位点(T560A)磷酸化的突变体具有与野生型PKCζ相似的比活性。T560A突变体还保护PKCζ免受蛋白水解,而苏氨酸-410位点的磷酸化则将其靶向蛋白酶体降解。用乳胞素阻断蛋白酶体降解导致全长PKCζΔPSS、T410E、PKCζΔPSS T410/560E、PKCζ和T560A的积累。表达的PKCζ活性与细胞外调节蛋白激酶激活、细胞分裂增加、血清非依赖性生长和集落形成平行。在表达较高PKCζ活性的细胞(PKCζΔPSS、PKCζΔPSS T410/560E和T560A突变体)中可以看到这些集落,但这些成纤维细胞没有显示出明显的非锚定依赖性生长。这项工作提供了关于PSS和磷酸化位点在调节非典型PKC的活性和周转中的作用的新信息,并展示了这种活性如何在集落形成方面诱导细胞转化。