Fosbrink Matthew, Niculescu Florin, Rus Horea
Toxicology Program, University of Maryland, Baltimore, MD 21201, USA.
Immunol Res. 2005;31(1):37-46. doi: 10.1385/IR:31:1:37.
Activation of the complement system plays an important role in innate and acquired immunity. Activation of complement and subsequent formation of C5b-9 channels on the surface of cellular membranes leads to cell lysis. When the number of channels assembled on the surface of nucleated cells is limited, C5b-9 does not cause lysis, but instead can induce cell-cycle progression by activating signal transduction pathways, transcription factors, and key components of the cell-cycle machinery. Cell-cycle induction by C5b-9 is dependent on the activation of phosphatidylinositol 3-kinase and the ERK1 pathway in a Gi protein-dependent manner. Cell-cycle activation is regulated, in part, by activation of proto-oncogene c-jun and AP1 DNA binding activity. C5b-9 induces sequential activation of CDK4 and CDK2, leading to G1/S-phase transition and cellular proliferation. RGC-32 is a novel gene whose expression is induced by C5b-9. RGC-32 may play a key role in cell-cycle activation by increasing cyclin B1-CDC2 activity. C5b-9-mediated cell-cycle activation plays an important role in cellular proliferation and protection from apoptosis.
补体系统的激活在固有免疫和获得性免疫中发挥重要作用。补体的激活以及随后在细胞膜表面形成C5b - 9通道会导致细胞裂解。当组装在有核细胞表面的通道数量有限时,C5b - 9不会引起细胞裂解,而是可以通过激活信号转导通路、转录因子和细胞周期机制的关键成分来诱导细胞周期进程。C5b - 9诱导的细胞周期依赖于磷脂酰肌醇3激酶和ERK1通路以Gi蛋白依赖的方式激活。细胞周期激活部分受原癌基因c - jun的激活和AP1 DNA结合活性的调节。C5b - 9诱导CDK4和CDK2的顺序激活,导致G1/S期转换和细胞增殖。RGC - 32是一个新基因,其表达由C5b - 9诱导。RGC - 32可能通过增加细胞周期蛋白B1 - CDC2活性在细胞周期激活中起关键作用。C5b - 9介导的细胞周期激活在细胞增殖和抗凋亡保护中起重要作用。