Mizuno K, Noda K, Araki T, Imaoka T, Kobayashi Y, Akita Y, Shimonaka M, Kishi S, Ohno S
Department of Molecular Biology, Yokohama City University School of Medicine, Yokohama, Japan.
Eur J Biochem. 1997 Nov 15;250(1):7-18. doi: 10.1111/j.1432-1033.1997.00007.x.
Protein kinase C (PKC) has been implicated in signaling induced by diverse sets of stimuli regulating growth, differentiation, and apoptosis. The present study focused on the fate of PKC isotype proteins during Fas-mediated apoptosis of human leukemic cell lines. Among the PKC isotypes expressed in different cell types, such as Jurkat, HPB-ALL, U937, and HL60, all the nPKC isotypes including nPKCdelta, nPKC epsilon, and nPKCtheta, but not cPKC alpha and betaII and aPKCzeta (n, c, and a represent novel, conventional and atypical, respectively), showed limited proteolytic cleavage during Fas-mediated apoptosis. The limited proteolysis of nPKC isotypes means the disappearance of the intact protein band concomitant with the appearance of two fragments, most likely containing the kinase and regulatory domains, in contrast to the so-called down-regulation known for both cPKC and nPKC isotypes following exposure to stimuli such as 12-O-tetradecanoyl-phorbol 13-acetate (TPA). The time course of Fas-mediated apoptosis in Jurkat cells parallels that of the activation of a 32-kDa cysteine protease (CPP32)-like protease and also closely parallels the proteolytic cleavage of nPKC isotypes. A peptide inhibitor of the CPP32-like protease, Ac-DEVD-CHO, blocked the proteolytic cleavage of nPKC isotypes as well as apoptosis mediated by Fas. Transfection of recombinant protein coding for the catalytic fragment of nPKCdelta to COS1 cells resulted in the apoptotic morphology of cells and nuclei. The effect of TPA on apoptosis depends on the cell type. TPA significantly suppressed Fas-mediated apoptosis in Jurkat, whereas TPA alone caused apoptosis in HPB-ALL, U937, and HL60, only slight apoptosis in Jurkat. The proteolytic fragmentation of nPKC isotypes again closely correlated with the degree of apoptosis even in apoptosis induced by TPA. Separation of TPA-treated cells into apoptotic and non-apoptotic differentiating cells revealed that the proteolytic fragmentation of nPKC isotypes occurs only in apoptotic cells and, in adherent differentiating cells, nPKC isotypes as well as cPKC alpha were down-regulated without the generation of nPKC fragments. These results are consistent with the idea that nPKC isotypes meet two different fates, down-regulation and proteolytic cleavage generating kinase and regulatory fragments, and that the proteolytic cleavage of nPKC isotypes is a step in the signaling pathway involved in Fas-mediated and TPA-induced apoptosis.
蛋白激酶C(PKC)与多种调节生长、分化和凋亡的刺激所诱导的信号传导有关。本研究聚焦于人类白血病细胞系Fas介导的凋亡过程中PKC同工型蛋白的命运。在不同细胞类型(如Jurkat、HPB-ALL、U937和HL60)中表达的PKC同工型中,所有新PKC同工型,包括nPKCδ、nPKCε和nPKCθ,但不包括传统PKCα和βII以及非典型PKCζ(n、c和a分别代表新的、传统的和非典型的),在Fas介导的凋亡过程中显示出有限的蛋白水解切割。nPKC同工型的有限蛋白水解意味着完整蛋白条带消失,同时出现两个片段,很可能包含激酶和调节结构域,这与cPKC和nPKC同工型在暴露于如12-O-十四烷酰佛波醇13-乙酸酯(TPA)等刺激后已知的所谓下调情况相反。Jurkat细胞中Fas介导的凋亡时间进程与一种32 kDa半胱氨酸蛋白酶(CPP32)样蛋白酶的激活时间进程平行,也与nPKC同工型的蛋白水解切割密切平行。CPP32样蛋白酶的肽抑制剂Ac-DEVD-CHO阻断了nPKC同工型的蛋白水解切割以及Fas介导的凋亡。将编码nPKCδ催化片段的重组蛋白转染到COS1细胞中导致细胞和细胞核出现凋亡形态。TPA对凋亡的影响取决于细胞类型。TPA显著抑制Jurkat细胞中Fas介导的凋亡,而单独的TPA在HPB-ALL、U937和HL60细胞中导致凋亡,在Jurkat细胞中仅引起轻微凋亡。即使在TPA诱导的凋亡中,nPKC同工型的蛋白水解片段化也再次与凋亡程度密切相关。将TPA处理的细胞分为凋亡细胞和非凋亡分化细胞显示,nPKC同工型的蛋白水解片段化仅发生在凋亡细胞中,在贴壁分化细胞中,nPKC同工型以及cPKCα被下调,且未产生nPKC片段。这些结果与以下观点一致,即nPKC同工型有两种不同的命运,下调和蛋白水解切割产生激酶和调节片段,并且nPKC同工型的蛋白水解切割是Fas介导和TPA诱导的凋亡所涉及的信号通路中的一个步骤。