Bihain B E, Yen F T
Department of Physiology, Louisiana State University Medical Center, New Orleans 70112-2822.
Biochemistry. 1992 May 19;31(19):4628-36. doi: 10.1021/bi00134a013.
This paper describes a mechanism for degradation of low-density lipoprotein (LDL) in fibroblasts unable to synthesize the LDL receptor. In this cell line, long-chain free fatty acids (FFA) activated 125I-LDL uptake; unsaturated FFA were the most efficient. The first step of this pathway was the binding of LDL apoB to a single class of sites on the plasma membrane and was reversible in the presence of greater than or equal to 10 mM suramin. Binding equilibrium was achieved after a 60-90-min incubation at 37 degrees C with 1 mM oleate; under these conditions, the apparent Kd for 125I-LDL binding was 12.3 micrograms/mL. Both cholesterol-rich (LDL and beta-VLDL) and triglyceride-rich (VLDL) lipoproteins, but not apoE-free HDL, efficiently competed with 125I-LDL for this FFA-induced binding site. After LDL bound to the cell surface, they were internalized and delivered to lysosomes; chloroquine inhibited subsequent proteolysis of LDL and thereby increased the cellular content of the particles. A physiological oleate to albumin molar ratio, i.e., 1:1 (25 microM oleate and 2 mg/mL albumin), was sufficient to significantly (p less than 0.01) activate all three steps of this alternate pathway: for example, 644 +/- 217 (25 microM oleate) versus 33 +/- 57 (no oleate) ng of LDL/mg of cell protein was degraded after incubation (2 h, 37 degrees C) with 50 micrograms/mL 125I-LDL. We speculate that this pathway could contribute to the clearance of both chylomicron remnants and LDL.
本文描述了在无法合成低密度脂蛋白(LDL)受体的成纤维细胞中低密度脂蛋白降解的一种机制。在该细胞系中,长链游离脂肪酸(FFA)激活了125I-LDL的摄取;不饱和脂肪酸最为有效。该途径的第一步是LDL载脂蛋白B与质膜上单一类别的位点结合,并且在存在大于或等于10 mM苏拉明的情况下是可逆的。在37℃下与1 mM油酸孵育60 - 90分钟后达到结合平衡;在这些条件下,125I-LDL结合的表观解离常数(Kd)为12.3微克/毫升。富含胆固醇的(LDL和β-VLDL)以及富含甘油三酯的(VLDL)脂蛋白,但不含载脂蛋白E的高密度脂蛋白(HDL),能有效地与125I-LDL竞争这种脂肪酸诱导的结合位点。LDL与细胞表面结合后,被内化并转运至溶酶体;氯喹抑制LDL随后的蛋白水解,从而增加细胞内这些颗粒的含量。生理状态下油酸与白蛋白的摩尔比,即1:1(25 microM油酸和2 mg/mL白蛋白),足以显著(p < 0.01)激活这条替代途径的所有三个步骤:例如,与50微克/毫升125I-LDL孵育(2小时,37℃)后,降解的LDL为644±217(25 microM油酸)纳克/毫克细胞蛋白,而无油酸时为33±57纳克/毫克细胞蛋白。我们推测这条途径可能有助于乳糜微粒残粒和LDL的清除。