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培养的猪肝细胞对载脂蛋白E游离高密度脂蛋白和低密度脂蛋白的高亲和力摄取与降解

High-affinity uptake and degradation of apolipoprotein E free high-density lipoprotein and low-density lipoprotein in cultured porcine hepatocytes.

作者信息

Bachorik P S, Franklin F A, Virgil D G, Kwiterovich P O

出版信息

Biochemistry. 1982 Oct 26;21(22):5675-84. doi: 10.1021/bi00265a044.

Abstract

Isolated pig liver membranes contain a specific "lipoprotein binding site" that recognizes low-density lipoproteins (LDL) and apolipoprotein E (apoE) free high-density lipoprotein (HDL) [Bachorik, P. S., Kwiterovich, P. O., & Cooke, J. (1978) Biochemistry 17, 5287-5299]. We report here that a similar site exists in cultured porcine hepatocytes and that it mediates the uptake and degradation of apoE-free HDL. The binding of 125I-labeled HDL and 125I-labeled LDL (125I-HDL and 125I-LDL, respectively) at 4 degrees C and the uptake and degradation of the lipoproteins at 37 degrees C were time dependent and saturable and were not inhibited by unrelated proteins. Chloroquine (6 x 10(-5)M) inhibited the degradation of 125I-HDL by 76% and of 125I-LDL by greater than 99%; leupeptin inhibited the degradation of both lipoproteins by about 25%. 125I-HDL binding (4 degrees C), uptake, and degradation (37 degrees C) were inhibited by LDL, methyl-LDL, and methyl-HDL about as well as by unlabeled HDL but were unaltered in Pronase-treated cells or in cells that were cultured for 24 h in either lipoprotein-free medium containing HDL or LDL (200 micrograms/mL). In contrast, these conditions affected the uptake and degradation of 125I-LDL disproportionately. HDL and methyl-LDL inhibited 125I-LDL uptake by 50% or more but had little effect on degradation. 125I-LDL binding was reduced by 12% and degradation by 57% in Pronase-treated cells. Preincubation of the cells with LDL (200 micrograms/mL) reduced uptake by 35% and degradation by 68%. Similar preincubation with HDL (200 micrograms/mL) increased 125I-LDL degradation by 60% but did not affect 125I-LDL uptake. The findings indicated the presence in porcine hepatocytes of at least two distinct sites for lipoproteins. One site resembled the LDL receptor and mediated 125I-LDL degradation. A second, Pronase-insensitive site recognized both HDL and LDL. This site mediated almost all of the degradation of 125I-HDL but little if any degradation of 125I-LDL.

摘要

分离的猪肝细胞膜含有一种特异性“脂蛋白结合位点”,该位点可识别低密度脂蛋白(LDL)以及游离的载脂蛋白E(apoE)高密度脂蛋白(HDL)[巴乔里克,P.S.,奎特罗维奇,P.O.,& 库克,J.(1978年)《生物化学》17,5287 - 5299]。我们在此报告,在培养的猪肝细胞中存在类似的位点,并且它介导了无apoE的HDL的摄取和降解。在4℃下125I标记的HDL和125I标记的LDL(分别为125I - HDL和125I - LDL)的结合以及在37℃下脂蛋白的摄取和降解是时间依赖性且可饱和的,并且不受无关蛋白质的抑制。氯喹(6×10−5M)抑制125I - HDL的降解达76%,抑制125I - LDL的降解超过99%;亮抑蛋白酶肽抑制两种脂蛋白的降解约25%。125I - HDL的结合(4℃)、摄取和降解(37℃)受到LDL、甲基化LDL和甲基化HDL的抑制程度与未标记的HDL大致相同,但在经链霉蛋白酶处理的细胞中或在不含脂蛋白的培养基中添加HDL或LDL(200μg/mL)培养24小时的细胞中未发生改变。相比之下,这些条件对125I - LDL的摄取和降解影响不成比例。HDL和甲基化LDL抑制125I - LDL摄取达50%或更多,但对降解影响很小。在经链霉蛋白酶处理的细胞中,125I - LDL的结合减少了12%,降解减少了57%。用LDL(200μg/mL)对细胞进行预孵育使摄取减少35%,降解减少68%。用HDL(200μg/mL)进行类似的预孵育使125I - LDL的降解增加60%,但不影响125I - LDL的摄取。这些发现表明猪肝细胞中存在至少两个不同的脂蛋白位点。一个位点类似于LDL受体并介导125I - LDL的降解。另一个对链霉蛋白酶不敏感的位点可识别HDL和LDL。该位点介导了几乎所有125I - HDL的降解,但对125I - LDL的降解几乎没有影响(如果有影响也很小)。

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