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人多形核白细胞中低密度脂蛋白受体的表达与功能

Low density lipoprotein receptor expression and function in human polymorphonuclear leucocytes.

作者信息

Lara L L, Rivera H, Perez-P C, Blanca I, Bianco N E, De Sanctis J B

机构信息

Instituto de Immunología, Facultad de Medecina, Universidad Central deVenezuela, Caracas.

出版信息

Clin Exp Immunol. 1997 Jan;107(1):205-12. doi: 10.1046/j.1365-2249.1997.d01-888.x.

Abstract

Low density lipoprotein receptors (LDLR), capable of internalizing LDL, are expressed in polymorphonuclear neutrophils (PMN). The expression was assessed using anti-LDLR antibody by flow cytometry. The internalization of LDL was assessed by: (i) quantification of the uptake of labelled LDL with 1,1'-dioctadecyl-3,3,3',3' tetramethyl-indocarboxycyanine perchlorate (DiI) by flow cytometry; and (ii) the binding of LDL-125I. In fresh purified cells, Lineweaver Burk analysis of LDL binding (LDL-DiI) revealed that the calculated Kd (internalized LDL) for PMN (15.0 x 10(-9) M) is lower than the Kd for monocytes (1.1 x 10(-7) M) and the Kd for lymphocytes (3.2 x 10(-7) M). Scatchard analysis (LDL-125I) revealed 25,000 binding sites and a Kd of 9.6 x 10(-9) M for PMN. The interaction of LDL with its receptor caused a two-fold fast (peak at 1 min) and transient increase in the oxidative burst, measured by the formation of 2',7' dicholoflurescein (DCF) by flow cytometry. This effect was not observed in monocytes or lymphocytes, and it was blocked by anti-LDLR antibody. The stimulation of LDL was optimal at 10 microg of protein/ml. LDL was able to suppress DCF formation induced by phorbol myristate acetate (PMA) and PMA was unable to further stimulate LDL-treated cells, suggesting protein kinase-C (PKC) involvement in LDL effects. Using a PKC assay, LDL was shown to induce a two-fold increase in PKC translocation to the membrane. Thus, LDL increases PMN oxidative burst through a PKC-dependent pathway.

摘要

能够内化低密度脂蛋白(LDL)的低密度脂蛋白受体(LDLR)在多形核中性粒细胞(PMN)中表达。通过流式细胞术使用抗LDLR抗体评估其表达。通过以下方法评估LDL的内化:(i)通过流式细胞术对用1,1'-二辛基-3,3,3',3'-四甲基吲哚羰花青高氯酸盐(DiI)标记的LDL摄取进行定量;(ii)LDL-125I的结合。在新鲜纯化的细胞中,对LDL结合(LDL-DiI)进行Lineweaver Burk分析表明,PMN计算得出的Kd(内化LDL)(15.0×10⁻⁹ M)低于单核细胞的Kd(1.1×10⁻⁷ M)和淋巴细胞的Kd(3.2×10⁻⁷ M)。Scatchard分析(LDL-125I)显示PMN有25,000个结合位点,Kd为9.6×10⁻⁹ M。LDL与其受体的相互作用导致氧化爆发快速增加两倍(在1分钟时达到峰值)且短暂,通过流式细胞术检测2',7'-二氯荧光素(DCF)的形成来测量。在单核细胞或淋巴细胞中未观察到这种效应,并且它被抗LDLR抗体阻断。LDL的刺激在蛋白质浓度为10 μg/ml时最为理想。LDL能够抑制佛波醇肉豆蔻酸酯乙酸酯(PMA)诱导的DCF形成,并且PMA无法进一步刺激经LDL处理的细胞,提示蛋白激酶-C(PKC)参与LDL的效应。使用PKC测定法,结果显示LDL可诱导PKC向膜的转位增加两倍。因此,LDL通过PKC依赖性途径增加PMN的氧化爆发。

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