Magalhães Marco A O, Sun Chun Xiang, Glogauer Michael, Ellen Richard P
CIHR Group in Matrix Dynamics and Dental Research Institute, University of Toronto, Faculty of Dentistry, Toronto, Ontario, Canada.
Cell Microbiol. 2008 Feb;10(2):344-54. doi: 10.1111/j.1462-5822.2007.01045.x. Epub 2007 Sep 13.
Treponema denticola major outer sheath protein (Msp) inhibits neutrophil chemotaxis in vitro, but key regulatory mechanisms have not been identified. Because the Rac small GTPases regulate directional migration in response to chemoattractants, the objective was to analyse the effects of Msp on formyl-methionyl-leucyl-phenylalanine (fMLP)-mediated neutrophil polarization and Rac activation in murine neutrophils. Msp pretreatment of neutrophils inhibited both polarization and chemotactic migration in response to fMLP. Activation of small GTPases was measured by p21 binding domain (PBD) pulldown assays, followed by Western analysis, using monoclonal anti-Rac1, anti-Rac2, anti-cdc42 and anti-RhoA antibodies. Enriched native Msp selectively inhibited fMLP-stimulated Rac1 activation in a concentration-dependent manner, but did not affect Rac2, cdc42 or RhoA activation. Murine neutrophils transfected with vectors expressing fluorescent probes PAK-PBD-YFP and PH-AKT-RFP were used to determine the effects of Msp on the localization of activated Rac and PI3 kinase products. Real-time confocal images showed that Msp inhibited the polarized accumulation of activated Rac and PI3-kinase products upon exposure to fMLP. The findings indicate that T. denticola Msp inhibition of neutrophil polarity may be due to the selective suppression of the Rac1 pathway.
齿垢密螺旋体主要外鞘蛋白(Msp)在体外可抑制中性粒细胞趋化性,但关键调控机制尚未明确。由于Rac小GTP酶可调节对趋化因子作出反应的定向迁移,因此本研究旨在分析Msp对甲酰甲硫氨酰亮氨酰苯丙氨酸(fMLP)介导的小鼠中性粒细胞极化和Rac激活的影响。用Msp预处理中性粒细胞可抑制其对fMLP的极化和趋化迁移。通过p21结合域(PBD)下拉试验检测小GTP酶的激活情况,随后使用抗Rac1、抗Rac2、抗cdc42和抗RhoA单克隆抗体进行蛋白质免疫印迹分析。纯化的天然Msp以浓度依赖性方式选择性抑制fMLP刺激的Rac1激活,但不影响Rac2、cdc42或RhoA激活。用表达荧光探针PAK-PBD-YFP和PH-AKT-RFP的载体转染小鼠中性粒细胞,以确定Msp对活化Rac和PI3激酶产物定位的影响。实时共聚焦图像显示,Msp可抑制中性粒细胞暴露于fMLP后活化Rac和PI3激酶产物的极化积累。研究结果表明,齿垢密螺旋体Msp对中性粒细胞极性的抑制作用可能是由于对Rac1途径的选择性抑制。