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高密度脂蛋白(HDL)对淋巴细胞生长的促进作用。HDL结合位点的生理意义。

Promotion of lymphocyte growth by high density lipoproteins (HDL). Physiological significance of the HDL binding site.

作者信息

Jürgens G, Xu Q B, Huber L A, Böck G, Howanietz H, Wick G, Traill K N

机构信息

Institute for Medical Biochemistry, University of Graz, Austria.

出版信息

J Biol Chem. 1989 May 25;264(15):8549-56.

PMID:2542280
Abstract

The characteristics and physiological relevance of the high density lipoprotein (HDL) binding site on unstimulated and mitogen activated human peripheral blood lymphocytes have been investigated. At 37 degrees C, specific binding/uptake of fluorescent (dioctadecylin-docarbocyanine, DiI) HDL was observed by cells from healthy donors as well as by those from low density lipoprotein receptor-defective patients; mitogen activated T-blasts exhibited a markedly elevated DiI-HDL uptake compared to resting T-cells. Binding was saturable at 37 degrees C and of high affinity, with a Kd of 5 x 10(-8) M. It was blocked by anti-apoAI polyclonal antibodies (F(ab)2 fraction), but not by anti-apolipoprotein (apo)E, anti-apoAII, or anti-apoB, and was inhibited competitively by HDL apoproteins and an apoAI-protein A fusion protein. T-cell associated DiI-HDL was increased by trypsin treatment (of the cells) and decreased by activation in the presence of HDL or low density lipoprotein. Comparison of the concentration dependencies of growth promotion and specific cell association of HDL indicated that two mechanisms of lipid exchange may be in operation: one a binding-dependent mechanism of cholesterol exchange, with maximal effect in the HDL concentration range (20-200 micrograms/ml) in which specific binding increases rapidly, and the other a binding-independent exchange of lipids effective at concentrations in which specific binding is saturated (300-5000 micrograms/ml).

摘要

已对未刺激的和有丝分裂原激活的人外周血淋巴细胞上高密度脂蛋白(HDL)结合位点的特征及其生理相关性进行了研究。在37℃时,健康供体的细胞以及低密度脂蛋白受体缺陷患者的细胞均观察到荧光(二辛基吲哚碳菁,DiI)HDL的特异性结合/摄取;与静息T细胞相比,有丝分裂原激活的T母细胞表现出明显升高的DiI-HDL摄取。在37℃时结合是可饱和的且具有高亲和力,解离常数(Kd)为5×10⁻⁸M。它可被抗载脂蛋白AI多克隆抗体(F(ab)2片段)阻断,但不被抗载脂蛋白(apo)E、抗载脂蛋白AII或抗载脂蛋白B阻断,并且可被HDL载脂蛋白和一种载脂蛋白AI-蛋白A融合蛋白竞争性抑制。用胰蛋白酶处理(细胞)后,T细胞相关的DiI-HDL增加,而在HDL或低密度脂蛋白存在下激活则使其减少。HDL促进生长和特异性细胞结合的浓度依赖性比较表明,可能存在两种脂质交换机制:一种是胆固醇交换的结合依赖性机制,在HDL浓度范围(20 - 200微克/毫升)内效果最佳,此范围内特异性结合迅速增加;另一种是在特异性结合饱和的浓度(300 - 5000微克/毫升)下有效的非结合依赖性脂质交换。

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