Rus H, Niculescu F, Badea T, Shin M L
University of Maryland, School of Medicine, Department of Pathology, Baltimore 21201, USA.
Immunopharmacology. 1997 Dec;38(1-2):177-87. doi: 10.1016/s0162-3109(97)00063-5.
Sublytic complement attack through C5b-9 assembly induces oligodendrocytes (OLG) to express proto-oncogenes and to enter the cell cycle from resting G0/G1 phase to S phase. We have investigated whether cell cycle induction by C5b-9 is mediated by mitogen activated protein kinase (MAPK) pathway in OLG. C5b-9 but not C5b6 induced activation of both ERK1 and c-jun NH2 terminal kinases 1 (JNK1) in OLG. The increased ERK1 and JNK1 activities are transient, reaching a maximum around 20 min following exposure to C5b-9. Activation of Raf-1 and MEK1, upstream kinases of ERK1, was shown by increased Raf-1 kinase activity in anti-Raf-1 immunoprecipitates of OLG treated with C5b-9 and ERK1 activity that can be inhibited by PD098,059, a specific MEK1 inhibitor. Requirement for the ERK1 pathway in DNA synthesis was then evaluated using PD098,059. Enhanced DNA synthesis induced by serum complement was completely abolished when OLG were pretreated with PD098,059. On the other hand, c-fos mRNA expression induced by complement was inhibited only 50% by PD098,059, while the c-jun mRNA level was not affected by this MEK1 inhibitor. Interestingly, p70 S6 kinase, an important ribosomal kinase in mitogenesis, was also activated by C5b-9. These findings indicated that the MAPK pathways appears to play a major role in inducing OLG to enter the S phase of the cell cycle from the resting G1/G0 phase.
通过C5b-9组装的亚溶解补体攻击诱导少突胶质细胞(OLG)表达原癌基因,并使其从静止的G0/G1期进入细胞周期的S期。我们研究了C5b-9诱导的细胞周期是否由OLG中的丝裂原活化蛋白激酶(MAPK)途径介导。C5b-9而非C5b6诱导OLG中ERK1和c-jun NH2末端激酶1(JNK1)的激活。ERK1和JNK1活性的增加是短暂的,在暴露于C5b-9后约20分钟达到最大值。在用C5b-9处理的OLG的抗Raf-1免疫沉淀物中,Raf-1激酶活性增加以及ERK1活性可被特异性MEK1抑制剂PD098,059抑制,表明Raf-1和MEK1(ERK1的上游激酶)被激活。然后使用PD098,059评估DNA合成中ERK1途径的需求。当OLG用PD098,059预处理时,血清补体诱导的DNA合成增强被完全消除。另一方面,补体诱导的c-fos mRNA表达仅被PD098,059抑制50%,而c-jun mRNA水平不受该MEK1抑制剂影响。有趣的是,p70 S6激酶是有丝分裂中一种重要的核糖体激酶,也被C5b-9激活。这些发现表明,MAPK途径似乎在诱导OLG从静止的G1/G0期进入细胞周期的S期方面起主要作用。