Takata K, Horiuchi S, Morino Y
Department of Biochemistry, Kumamoto University Medical School, Japan.
Biochim Biophys Acta. 1989 Sep 18;984(3):273-80. doi: 10.1016/0005-2736(89)90293-9.
Rat sinusoidal liver cells take up maleylated bovine serum albumin (maleyl-BSA) and its demaleylated form (demaleyl-BSA) by scavenger receptor-mediated endocytosis. Cellular binding of maleyl-BSA and demaleyl-BSA and its quantitative relation to subsequent intracellular degradation were investigated. The binding affinities of these ligands were almost equal whereas the number of binding sites for maleyl-BSA was more than twice as large than that for demaleyl-BSA. However, no difference was observed in their endocytic degradation. The amounts of maleyl-BSA degraded were proportional to those bound to the cell surface up to a certain level. However, a further increase in cell-bound ligands did not affect the degradation of maleyl-BSA. Several polyanions such as fucoidin and dextran sulfate of Mr = 5000 inhibited the binding of maleyl-BSA but did not affect its degradation. In contrast, acetylated or oxidized low density lipoprotein had virtually no effect on cellular binding of maleyl-BSA but exhibited profound effects on its intracellular degradation. Similar results were obtained with rat peritoneal macrophages. Based on these data, we would propose that two binding sites are involved in the receptor-mediated ligand recognition; one is coupled to subsequent endocytic degradation, and the other serves as a binding site for polyanionic compounds.
大鼠肝窦状细胞通过清道夫受体介导的内吞作用摄取马来酰化牛血清白蛋白(maleyl-BSA)及其去马来酰化形式(demaleyl-BSA)。研究了maleyl-BSA和demaleyl-BSA的细胞结合及其与随后细胞内降解的定量关系。这些配体的结合亲和力几乎相等,而maleyl-BSA的结合位点数是demaleyl-BSA的两倍多。然而,它们的内吞降解没有差异。在一定水平以下,降解的maleyl-BSA量与结合到细胞表面的量成正比。然而,细胞结合配体的进一步增加并不影响maleyl-BSA的降解。几种多阴离子,如岩藻依聚糖和分子量为5000的硫酸葡聚糖,抑制maleyl-BSA的结合,但不影响其降解。相反,乙酰化或氧化的低密度脂蛋白对maleyl-BSA的细胞结合几乎没有影响,但对其细胞内降解有显著影响。大鼠腹腔巨噬细胞也得到了类似的结果。基于这些数据,我们提出受体介导的配体识别涉及两个结合位点;一个与随后的内吞降解偶联,另一个作为多阴离子化合物的结合位点。