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Characterization of the binding of human low-density lipoprotein to primary monolayer cultures of rat hepatocytes

机译:人低密度脂蛋白与大鼠肝细胞原代单层培养物结合的特征

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pThe binding of human low-density lipoprotein labelled with 125I to rat hepatocytes in monolayer culture was measured at 4 degrees C. Evidence for two different specific binding sites was obtained. Binding to Site 1 was characterized by: being displaced by dextran sulphate or heparin; being dependent on Ca2+; having a Kd value of about 15 micrograms of protein/ml; not being significantly displaced by a 20-fold excess unlabelled low-density lipoprotein that had been reductively methylated; being displaced by approx. 40% by a 20-fold protein excess of unlabelled human high-density lipoprotein, HDL3, and increasing with time in culture when newborn-calf serum was present in the medium. The binding to Site 2 had the following properties: it was not displaced by sulphated polysaccharides; it was only partially Ca2+-dependent, and the presence of EDTA increased the Kd value; the apparent Kd value in the presence of Ca2+ was approx. 30 micrograms of protein/ml, which was significantly higher than for Site 1; it was displaced by approx. 30% with a 20-fold excess of low-density lipoprotein that had been methylated; it was displaced by unlabelled HDL3 to a similar extent to Site 1; it did not increase significantly with time in culture. The characteristics of binding to Sites 1 and 2 are discussed in relation to the receptors for low-density lipoproteins that have previously been described in various cell types. It is proposed that the experimental system described in this paper is suitable for studying the regulation of the binding of low-density lipoproteins to hepatocytes./p
机译:在125℃下在4℃下测量用125I标记的人低密度脂蛋白与大鼠肝细胞的结合。获得两个不同特异性结合位点的证据。与位点1的结合的特征在于:被硫酸葡聚糖或肝素置换;依赖于Ca2 +具有约15微克蛋白质/毫升的Kd值;没有被被还原甲基化的20倍过量的未标记低密度脂蛋白显着取代;被流离失所40%的蛋白质是未标记的人高密度脂蛋白HDL3的20倍过量,并且当培养基中存在新生小牛血清时,随着培养时间的增加而增加。与位点2的结合具有以下特性:未被硫酸化多糖取代;它仅部分依赖于Ca2 +,EDTA的存在会增加Kd值。在Ca2 +存在下的表观Kd值约为。 30微克蛋白质/毫升,明显高于站点1的蛋白质;它被流离失所了。 30%的甲基化低密度脂蛋白过量20倍;它被未标记的HDL3取代,其程度与站点1相似;它并没有随着时间的推移而显着增加。关于低密度脂蛋白的受体的位置与位点1和2的结合特性已被讨论,以前已经在各种细胞类型中对其进行了描述。提出本文描述的实验系统适合研究低密度脂蛋白与肝细胞结合的调控。

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