Zang R, Müller H J, Kielbassa K, Marks F, Gschwendt M
German Cancer Research Center, Heidelberg, Federal Republic of Germany.
Biochem J. 1994 Dec 1;304 ( Pt 2)(Pt 2):641-7. doi: 10.1042/bj3040641.
Various murine tissues were tested, by using a protein kinase C-eta-specific antiserum, for the expression of type eta protein kinase C. Brain was found to be the richest source of a type eta isoenzyme. Native protein kinase C-eta was partially purified from the cytosol of murine brain by chromatography on DEAE-Sepharose, hydroxyapatite and protamine-agarose. This procedure resulted in a separation of protein kinase C-eta from the other phorbol 12-myristate 13-acetate (PMA)-responsive isoenzymes (alpha, beta, gamma, delta, epsilon) and allowed, for the first time, characterization of the native enzyme. The protein kinase C of type eta from mouse brain is a phospholipid-dependent Ca(2+)-unresponsive protein kinase. Both PMA and bryostatin activate the kinase for phosphorylation of a substrate as well as for autophosphorylation. Various pseudo-substrate-related peptides are suitable as substrates for the eta-type kinase, peptide delta being the best and peptides eta and epsilon the poorest substrates. The enzyme is inhibited by staurosporine and staurosporine-related compounds, such as K252a and Gö 6976. However, protein kinase C-eta, like protein kinase C-delta, is around two orders of magnitude less sensitive towards Gö 6976 than are the Ca(2+)-responsive isoenzymes (alpha, beta, gamma). The eta-type protein kinase C exhibits an extreme tendency to lose its PMA-responsiveness. Consequently, purification of the enzyme to homogeneity has not yet been successful.
利用蛋白激酶C-η特异性抗血清对多种小鼠组织进行检测,以确定η型蛋白激酶C的表达情况。结果发现,脑是η型同工酶最丰富的来源。通过在DEAE-琼脂糖、羟基磷灰石和鱼精蛋白-琼脂糖上进行层析,从小鼠脑的胞质溶胶中部分纯化了天然蛋白激酶C-η。该方法实现了蛋白激酶C-η与其他佛波醇12-肉豆蔻酸酯13-乙酸酯(PMA)反应性同工酶(α、β、γ、δ、ε)的分离,并首次对天然酶进行了表征。小鼠脑来源的η型蛋白激酶C是一种依赖磷脂的、对Ca(2+)不敏感的蛋白激酶。PMA和苔藓抑素均可激活该激酶,使其对底物进行磷酸化以及自身磷酸化。多种假底物相关肽适合作为η型激酶的底物,其中肽δ是最佳底物,而肽η和ε是最差底物。该酶受到星形孢菌素及其相关化合物(如K252a和Gö 6976)的抑制。然而,蛋白激酶C-η与蛋白激酶C-δ一样,对Gö 6976的敏感性比Ca(2+)反应性同工酶(α、β、γ)低约两个数量级。η型蛋白激酶C极容易失去其对PMA的反应性。因此,将该酶纯化至同质状态尚未成功。