Kim In Sik, Ryang Yong Suk, Kim Yoon Suk, Jang Sung-Wuk, Sung Ho Joong, Lee Young Han, Kim Jiyoung, Na Doe Sun, Ko Jesang
Asan Institute for Life Sciences, University of Ulsan College of Medicine, 388-1 Poongnap-dong, Songpa-gu, Seoul 138-736, South Korea.
Life Sci. 2003 Jun 13;73(4):447-59. doi: 10.1016/s0024-3205(03)00312-6.
Recently cloned leukotactin-1 (Lkn-1) that belongs to CC chemokine family has not been characterized. To understand the intracellular events following Lkn-1 binding to CCR1, we investigated the activities of signaling molecules in response to Lkn-1 in human osteogenic sarcoma cells expressing CCR1. Lkn-1-stimulated cells showed elevated phosphorylation of extracellular signal-related kinases (ERK1/2) with a distinct time course. ERK activation was peaked in 30 min and 12 h showing biphasic activation of ERK. Pertussis toxin, an inhibitor of G(i)/G(o) protein, and phospholipase C (PLC) inhibitor blocked Lkn-1-induced activation of ERK. Protein kinase C delta (PKC delta) specific inhibitor rottlerin inhibited ERK activation in Lkn-1-stimulated cells. The activities of PLC and PKC delta were also enhanced by Lkn-1 stimulation. Dominant negative Ras inhibited activation of ERK. Immediate early response genes such as c-fos and c-myc were induced by Lkn-1 stimulation. Lkn-1 affected the cell cycle progression by cyclin D(3) induction. These results suggest that Lkn-1 activates the ERK pathway by transducing the signal through G(i)/G(o) protein, PLC, PKC delta and Ras, and it may play a role for cell proliferation, differentiation, and regulation of gene expression for other cellular processes.
最近克隆出的属于CC趋化因子家族的白细胞趋化素-1(Lkn-1)尚未得到充分表征。为了了解Lkn-1与CCR1结合后的细胞内事件,我们研究了在表达CCR1的人骨肉瘤细胞中,信号分子对Lkn-1的反应活性。Lkn-1刺激的细胞显示细胞外信号调节激酶(ERK1/2)的磷酸化水平升高,且具有明显的时间进程。ERK激活在30分钟和12小时达到峰值,呈现出双相激活。百日咳毒素(一种G(i)/G(o)蛋白抑制剂)和磷脂酶C(PLC)抑制剂可阻断Lkn-1诱导的ERK激活。蛋白激酶Cδ(PKCδ)特异性抑制剂rottlerin可抑制Lkn-1刺激细胞中的ERK激活。Lkn-1刺激也增强了PLC和PKCδ的活性。显性负性Ras抑制ERK的激活。Lkn-1刺激可诱导c-fos和c-myc等早期反应基因。Lkn-1通过诱导细胞周期蛋白D(3)影响细胞周期进程。这些结果表明,Lkn-1通过G(i)/G(o)蛋白、PLC、PKCδ和Ras转导信号激活ERK途径,并且它可能在细胞增殖、分化以及其他细胞过程的基因表达调控中发挥作用。