Aminoterminal Propeptide of Type III Procollagen is Cleared from the Circulation by Receptor-Mediated Endocytosis in Liver Endothelial Cells

Bård Smedsrød
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引用次数: 80

Abstract

Intravenously administered 125I -labelled bovine aminoterminal propeptide of typeIII procollagen (125I -BPIIINP) had a half-life in blood of about 2 minutes. Low molecular weight degradation products appeared in the circulation about 5 minutes after injection. BPIIINP coupled to 125I -labelled tyramine cellobiose (125I -TC-BPIIINP) was administered intravenously to determine the cellular site of uptake. TC is non-degradable and is therefore accumulated intralysosomally. With this ligand I could show that PIIINP is taken up mainly by the liver endothelial cells (LEC), with very low uptake in other types of liver cells and at extrahepatic sites. Studies on binding and endocytosis of labelled PIIINP in cultures of purified populations of liver cells can be summarized as follows: 1) Uptake and degradation were observed mainly in LEC; 2) PIIINP associated with Kupffer and parenchymal cells, but degradation was very low; 3) Serum was not required for binding of PIIINP to LEC; 4) Binding was specific, that is, other ligands, such as collagen type III, hyaluronan, chondroitin sulfate, formaldehyde-treated albumin, and mannose, that are recognized by distinct receptors on LEC, did not compete with PIIINP for binding; 5) BPIIINP, TC-BPIIINP, and rat PIIINP (RPIIINP) were recognized with the same specificity by LEC; 6) BPIIINP bound to LEC with high affinity (dissociation constant = 1 nM), and about 4.2 × 105, 3.2 × 105, and 1.6 × 105 molecules of BPIIINP, TC-PIIINP, and R-PIIINP, respectively were bound per cell; 7) PIIINP could not be degraded by conditioned medium from cultured Kupffer cells; 8) Leupeptin, which is a strong inhibitor of lysosomal collagenolysis, only weakly inhibited degradation of PIIINP; 9) Binding and endocytosis of PIIINP was not Ca++-dependent; 10) Agents that inhibit the endocytic machinery inhibited uptake and degradation of PIIINP. In conclusion, the present results suggest that PIIINP is rapidly eliminated from the circulation by receptor-mediated endocytosis in LEC.

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受体介导的肝内皮细胞内吞作用清除循环中III型前胶原氨基末端前肽
静脉注射125I标记的牛iii型前胶原的氨基末端前肽(125I -BPIIINP)在血液中的半衰期约为2分钟。注射后约5分钟,循环中出现低分子量降解产物。BPIIINP与125I标记的酪胺纤维素糖(125I -TC-BPIIINP)偶联静脉注射,以确定摄取的细胞部位。TC是不可降解的,因此在溶酶体内积累。有了这个配体,我可以证明PIIINP主要被肝内皮细胞(LEC)吸收,在其他类型的肝细胞和肝外部位的吸收非常低。标记PIIINP在纯化的肝细胞群中结合和内吞的研究可以概括如下:1)主要在LEC中被摄取和降解;2) PIIINP与Kupffer细胞和实质细胞相关,但降解程度很低;3) PIIINP与LEC的结合不需要血清;4)结合具有特异性,即其他配体,如III型胶原、透明质酸、硫酸软骨素、甲醛处理过的白蛋白和甘露糖,在LEC上被不同的受体识别,不与PIIINP竞争结合;5) LEC对BPIIINP、TC-BPIIINP和大鼠PIIINP (RPIIINP)具有相同的特异性识别;6) BPIIINP与LEC具有高亲和力(解离常数= 1 nM),每个细胞分别结合约4.2 × 105、3.2 × 105和1.6 × 105个BPIIINP分子、TC-PIIINP分子和R-PIIINP分子;7)培养的Kupffer细胞中PIIINP不能被条件培养基降解;8) lepetin是溶酶体胶原溶解的强抑制剂,仅弱抑制PIIINP的降解;9) PIIINP的结合和内吞作用不依赖于Ca++;10)抑制内吞机制的药物抑制PIIINP的摄取和降解。总之,目前的结果表明,在LEC中,PIIINP通过受体介导的内吞作用迅速从循环中消除。
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