Tang Daming, Lu Jonathan, Walterscheid Jeffrey P, Chen Hsin-Hung, Engler David A, Sawamura Tatsuya, Chang Po-Yuan, Safi Hazim J, Yang Chao-Yuh, Chen Chu-Huang
Department of Medicine, Baylor College of Medicine, Houston, TX, USA.
J Lipid Res. 2008 Jan;49(1):33-47. doi: 10.1194/jlr.M700305-JLR200. Epub 2007 Oct 1.
Endothelial progenitor cells (EPCs), important for endothelial regeneration and vasculogenesis, are reduced by cigarette smoking. To elucidate the mechanisms, we examined the effects of electronegative LDL, circulating in chronic smokers, on EPC differentiation. Using ion-exchange chromatography, we purified smoker LDL into five subfractions, L1-L5. In matched, nonsmoking healthy subjects, L5, the most electronegative subfraction, was either absent or scanty. Sustained L5 treatment inhibited CD31 and KDR expression and EPC differentiation, whereas L1-L4 had no effect. L5 also inhibited telomerase activity to accelerate EPC senescence in correlation with reduced Akt phosphorylation. Transfection of day 3 EPCs with dominant negative Akt constructs inhibited CD31 and KDR expression, stalled EPC differentiation, and promoted early senescence. In contrast, transfection with constitutively active Akt rendered the EPCs resistant to L5, allowing normal maturation. L5 upregulated the lectin-like oxidized low density lipoprotein receptor 1 (LOX-1), and pretreatment of EPCs with TS20, a LOX-1-neutralizing antibody, blocked internalization of L5 by EPCs and prevented L5-mediated inhibition of EPC differentiation. Mixing L5 with L1 to physiological L5/L1 ratios did not attenuate L5's effects. These findings suggest that cigarette smoking is associated with the formation of L5, which inhibits EPC differentiation by impairing Akt phosphorylation via the LOX-1 receptor.
内皮祖细胞(EPCs)对内皮再生和血管生成很重要,而吸烟会使其数量减少。为了阐明其中的机制,我们研究了慢性吸烟者体内循环的带负电荷低密度脂蛋白(LDL)对EPC分化的影响。我们使用离子交换色谱法将吸烟者的LDL纯化分为五个亚组分,即L1 - L5。在匹配的非吸烟健康受试者中,最带负电荷的亚组分L5要么不存在,要么含量很少。持续用L5处理会抑制CD31和KDR的表达以及EPC的分化,而L1 - L4则没有影响。L5还会抑制端粒酶活性,加速EPC衰老,这与Akt磷酸化减少相关。用显性负性Akt构建体转染第3天的EPC会抑制CD31和KDR的表达,使EPC分化停滞,并促进早期衰老。相反,用组成型活性Akt转染使EPC对L5具有抗性,从而实现正常成熟。L5上调了凝集素样氧化低密度脂蛋白受体1(LOX - 1),用LOX - 1中和抗体TS20预处理EPC可阻断EPC对L5的内化,并防止L5介导的对EPC分化的抑制。将L5与L1按生理L5/L1比例混合并不会减弱L5的作用。这些发现表明,吸烟与L5的形成有关,L5通过LOX - 1受体损害Akt磷酸化来抑制EPC分化。