Lactoferrin binding to heparan sulfate proteoglycans and the LDL receptor-related protein. Further evidence supporting the importance of direct binding of remnant lipoproteins to HSPG.

Z S Ji, R W Mahley
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引用次数: 118

Abstract

Bovine lactoferrin inhibits the clearance of remnant lipoproteins from the plasma and competes with the cell-surface binding of apolipoprotein (apo) E-enriched remnants. We established that lactoferrin inhibits remnant binding and uptake by interacting with both heparan sulfate proteoglycans (HSPG) and the low-density lipoprotein receptor-related protein (LRP). The binding of 125I-lactoferrin was inhibited 45% to 60% in HepG2 hepatocytes and wild-type Chinese hamster ovary (CHO) cells treated with heparinase to remove HSPG. In mutant CHO cells (pgsD-677) lacking HSPG, the level of 125I-lactoferrin binding was approximately 50% that seen with wild-type CHO cells; thus, about one half of lactoferrin binding appears to be mediated through cell-surface HSPG. A significant fraction of the residual binding of the lactoferrin appears to be mediated through the LRP. The 39-kd protein known to bind to the LRP and to block ligand interaction inhibited 125I-lactoferrin degradation in wild-type CHO cells by 60% to 65%. The addition of the 39-kd protein plus heparinase treatment reduced the binding by 85% to 90% (this combination blocks direct interaction with both the LRP and HSPG). However, it was also shown that the 39-kd protein bound to HSPG and the LRP. Heparinase treatment of wild-type CHO cells decreased the binding of the 125I-39-kd protein by approximately 40%, and the mutant CHO cells lacking HSPG bound half as much 125I-39-kd protein as wild-type CHO cells.(ABSTRACT TRUNCATED AT 250 WORDS)

乳铁蛋白与硫酸肝素蛋白聚糖和LDL受体相关蛋白的结合。进一步的证据支持残余脂蛋白与HSPG直接结合的重要性。
牛乳铁蛋白抑制血浆中残余脂蛋白的清除,并与载脂蛋白(apo) e富集残留物的细胞表面结合竞争。我们发现乳铁蛋白通过与硫酸肝素蛋白聚糖(HSPG)和低密度脂蛋白受体相关蛋白(LRP)相互作用抑制残体的结合和摄取。肝素酶去除HSPG后,HepG2肝细胞和野生型中国仓鼠卵巢(CHO)细胞的125i -乳铁蛋白结合被抑制45% ~ 60%。在缺乏HSPG的突变型CHO细胞(pgsD-677)中,125i -乳铁蛋白结合水平约为野生型CHO细胞的50%;因此,大约一半的乳铁蛋白结合似乎是通过细胞表面HSPG介导的。乳铁蛋白残留结合的很大一部分似乎是通过LRP介导的。已知与LRP结合并阻断配体相互作用的39-kd蛋白抑制野生型CHO细胞中125i -乳铁蛋白降解60%至65%。添加39-kd蛋白和肝素酶处理使结合降低了85%至90%(这种组合阻断了与LRP和HSPG的直接相互作用)。然而,也表明39-kd蛋白与HSPG和LRP结合。肝素酶处理使野生型CHO细胞的125I-39-kd蛋白结合减少了约40%,缺乏HSPG的突变型CHO细胞结合125I-39-kd蛋白的数量是野生型CHO细胞的一半。(摘要删节250字)
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