McGlynn E, Liebetanz J, Reutener S, Wood J, Lydon N B, Hofstetter H, Vanek M, Meyer T, Fabbro D
Research Department, Ciba-Geigy Limited, Basel, Switzerland.
J Cell Biochem. 1992 Jul;49(3):239-50. doi: 10.1002/jcb.240490306.
Expression of rat protein kinase C-delta (PKC-delta) and PKC-zeta in insect cells using recombinant baculovirus resulted in the production of proteins with a molecular size of approximately 76 kD and 78 kD, respectively, as determined by immunoblotting with subtype-specific antisera. Although the PKC-zeta cDNA encoded for 592 amino acids, a 76 kD protein was also generated by in vitro transcription/translation. Extracts of cells expressing PKC-delta were able to bind phorbol ester to levels comparable to extracts of cells expressing PKC-alpha. No phorbol ester binding was, however, detected in insect cell extracts expressing PKC-zeta. However, similar levels of protein kinase activity were detected in lysates of cells expressing PKC-delta or PKC-zeta when protamine sulfate was used as exogenous substrate. Compared to protamine sulfate, both, myelin basic protein (MBP) or histone, were poor substrates for PKC-delta and PKC-zeta. In contrast to PKC-zeta, the PKC-delta enzyme activity phosphorylated MBP or histone in a phosphatidylserine-(PS)/diacylglycerol(DG)-dependent manner, albeit not to the same extent as PKC-alpha. Lack of stimulation of the enzyme activity of PKC-zeta by PS/DG, was confirmed by endogenous phosphorylation of insect cell proteins by PKC-zeta, whereas several insect cell proteins were phosphorylated by PKC-delta in a PS/DG-dependent manner, including a protein of 78 kD. Our data demonstrate that the 76 kD PKC-zeta, in contrast to PKC-delta, is unable to bind phorbol esters and displays a protein kinase activity that is independent of PS or PS/DG. In addition, staurosporine was about 2-4 order of magnitudes less effective in inhibiting the protein kinase activities of PKC-delta and PKC-zeta when compared to PKC-alpha.
利用重组杆状病毒在昆虫细胞中表达大鼠蛋白激酶C-δ(PKC-δ)和PKC-ζ,通过亚型特异性抗血清免疫印迹法测定,分别产生了分子量约为76kD和78kD的蛋白质。虽然PKC-ζ cDNA编码592个氨基酸,但通过体外转录/翻译也产生了一种76kD的蛋白质。表达PKC-δ的细胞提取物能够结合佛波酯,其水平与表达PKC-α的细胞提取物相当。然而,在表达PKC-ζ的昆虫细胞提取物中未检测到佛波酯结合。然而,当使用硫酸鱼精蛋白作为外源底物时,在表达PKC-δ或PKC-ζ的细胞裂解物中检测到相似水平的蛋白激酶活性。与硫酸鱼精蛋白相比,髓鞘碱性蛋白(MBP)或组蛋白都是PKC-δ和PKC-ζ较差的底物。与PKC-ζ相反,PKC-δ酶活性以磷脂酰丝氨酸-(PS)/二酰基甘油(DG)依赖的方式磷酸化MBP或组蛋白,尽管程度不如PKC-α。PKC-ζ的酶活性缺乏PS/DG刺激,这通过PKC-ζ对昆虫细胞蛋白的内源性磷酸化得到证实,而几种昆虫细胞蛋白以PS/DG依赖的方式被PKC-δ磷酸化,包括一种78kD的蛋白质。我们的数据表明,与PKC-δ相反,76kD的PKC-ζ无法结合佛波酯,并且显示出独立于PS或PS/DG的蛋白激酶活性。此外,与PKC-α相比,星形孢菌素抑制PKC-δ和PKC-ζ蛋白激酶活性的效果要低约2-4个数量级。