Horiuchi S, Murakami M, Takata K, Morino Y
J Biol Chem. 1986 Apr 15;261(11):4962-6.
This paper describes an unexpectedly broad ligand specificity of a scavenger receptor of sinusoidal liver cells that is responsible for endocytic uptake of formaldehyde-treated bovine serum albumin (f-Alb). Binding of 125I-f-Alb to the isolated cells was effectively inhibited by bovine serum albumin (BSA) modified with aliphatic aldehydes such as glycolaldehye, DL-glyceraldehyde, and propionaldehyde whereas albumin preparations modified by aromatic aldehydes such as pyridoxal, pyridoxal phosphate, salicylaldehyde, and benzaldehyde did not affect this binding process. Binding of 125I-glycolaldehyde-treated BSA to the cells exhibited a saturation kinetics with an apparent Kd = 3.3 micrograms of the ligand/ml. This binding process was inhibited by unlabeled f-Alb as well as by the antibody raised against the f-Alb receptor. Indeed, 125I-glycolaldehyde-treated BSA underwent a rapid plasma clearance (t1/2 approximately 2 min) which was markedly retarded by unlabeled f-Alb. Upon treatment by these aldehydes, other proteins such as ovalbumin, soybean trypsin inhibitor, and hemoglobin were also converted to active ligands for the f-Alb receptor, while no ligand activity was generated with gamma-globulin and RNase A. These results clearly show that the f-Alb receptor, originally described as being specific for f-Alb, exhibits a broad ligand specificity in terms of both aldehydes and proteins and, hence, should be described as a scavenger receptor for aldehyde-modified proteins.
本文描述了肝血窦细胞清道夫受体出人意料的广泛配体特异性,该受体负责内吞甲醛处理的牛血清白蛋白(f-Alb)。125I-f-Alb与分离细胞的结合可被经脂肪醛(如乙醇醛、DL-甘油醛和丙醛)修饰的牛血清白蛋白(BSA)有效抑制,而经芳香醛(如吡哆醛、磷酸吡哆醛、水杨醛和苯甲醛)修饰的白蛋白制剂则不影响此结合过程。125I-乙醇醛处理的BSA与细胞的结合呈现饱和动力学,表观解离常数Kd = 3.3微克配体/毫升。此结合过程可被未标记的f-Alb以及针对f-Alb受体产生的抗体抑制。实际上,125I-乙醇醛处理的BSA在血浆中快速清除(半衰期约2分钟),未标记的f-Alb可显著延缓其清除。经这些醛处理后,其他蛋白质如卵清蛋白、大豆胰蛋白酶抑制剂和血红蛋白也转化为f-Alb受体的活性配体,而γ-球蛋白和核糖核酸酶A未产生配体活性。这些结果清楚地表明,最初被描述为对f-Alb具有特异性的f-Alb受体,在醛类和蛋白质方面均表现出广泛的配体特异性,因此,应被描述为醛修饰蛋白的清道夫受体。