Webb B L, Lindsay M A, Barnes P J, Giembycz M A
Thoracic Medicine, Imperial College School of Medicine at the National Heart and Lung Institute, Dovehouse Street, London SW3 6LY, U.K.
Biochem J. 1997 May 15;324 ( Pt 1)(Pt 1):167-75. doi: 10.1042/bj3240167.
The protein kinase C (PKC) isoenzymes expressed by bovine tracheal smooth muscle (BTSM) were identified at the protein and mRNA levels. Western immunoblot analyses reliably identified PKCalpha, PKCbetaI and PKCbetaII. In some experiments immunoreactive bands corresponding to PKCdelta, PKCepsilon and PKCTheta were also labelled, whereas the gamma, eta and zeta isoforms of PKC were never detected. Reverse transcriptase PCR of RNA extracted from BTSM using oligonucleotide primer pairs designed to recognize unique sequences in the PKC genes for which protein was absent or not reproducibly identified by immunoblotting, amplified cDNA fragments that corresponded to the predicted sizes of PKCdelta, PKCepsilon and PKCzeta, which was confirmed by Southern blotting. Anion-exchange chromatography of the soluble fraction of BTSM following homogenization in Ca2+-free buffer resolved two major peaks of activity. Using epsilon-peptide as the substrate, the first peak of activity was dependent upon Ca2+ and 4beta-PDBu (PDBu=phorbol 12, 13-dibutyrate), and represented a mixture of PKCs alpha, betaI and betaII. In contrast, the second peak of activity, which eluted at much higher ionic strength, also appeared to comprise a combination of conventional PKCs that were arbitrarily denoted PKCalpha', PKCbetaI' and PKCbetaII'. However, these novel enzymes were cofactor-independent and did not bind [3H]PDBu, but were equally sensitive to the PKC inhibitor GF 109203X compared with bona fide conventional PKCs, and migrated on SDS/polyacrylamide gels as 81 kDa polypeptides. Taken together, these data suggest that PKCs alpha', betaI' and betaII' represent modified, but not proteolysed, forms of their respective native enzymes that retain antibody immunoreactivity and sensitivity to PKC inhibitors, but have lost their sensitivity to Ca2+ and PDBu when epsilon-peptide is used as the substrate.
在蛋白质和mRNA水平上鉴定了牛气管平滑肌(BTSM)表达的蛋白激酶C(PKC)同工酶。蛋白质免疫印迹分析可靠地鉴定出PKCα、PKCβI和PKCβII。在一些实验中,与PKCδ、PKCε和PKCθ相对应的免疫反应条带也被标记,而PKC的γ、η和ζ同工型从未被检测到。使用设计用于识别PKC基因中独特序列的寡核苷酸引物对,对从BTSM提取的RNA进行逆转录PCR,这些基因的蛋白质不存在或通过免疫印迹未可重复鉴定,扩增出与PKCδ、PKCε和PKCζ预测大小相对应的cDNA片段,这通过Southern印迹得到证实。在无Ca2+缓冲液中匀浆后,对BTSM的可溶部分进行阴离子交换色谱分析,分离出两个主要活性峰。以ε-肽为底物,第一个活性峰依赖于Ca2+和4β-PDBu(PDBu = 佛波醇12,13-二丁酸酯),代表PKCα、βI和βII的混合物。相比之下,在高得多的离子强度下洗脱的第二个活性峰似乎也包含传统PKC的组合,被任意命名为PKCα'、PKCβI'和PKCβII'。然而,这些新酶不依赖辅因子,不结合[3H]PDBu,但与真正的传统PKC相比,对PKC抑制剂GF