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Receptor-mediated endocytosis by the asialoglycoprotein receptor: effect of ethanol administration on endosomal distribution of receptor and ligand.

机译:去唾液酸糖蛋白受体的受体介导的内吞作用:乙醇对受体和配体的内体分布的影响。

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Using the asialoglycoprotein receptor (ASGP-R) and a representative ligand, asialoorosomucoid (ASOR), we have previously shown ethanol-induced impairment of endosomal acidification, receptor recycling and ligand binding, internalization, and degradation. In the current study, we further investigated ethanol-induced alterations in receptor/ligand trafficking by labeling endosomes in vivo with either Texas-Red-ASOR or 125I-ASOR, and then assessing the receptor/ligand content of endosomes. We assessed two fractions after both 5 and 25 min of labeling: 'early endosomes' (EEs; endosomes from the cell periphery) and 'late endosomes' (LEs; endosomes farther into the cell interior). At both time points, significantly more ligand was found in EE fractions isolated from chow- and pair-fed controls (3:1, EE to LE, respectively). However, endosomes isolated from ethanol-fed animals showed a shift over time toward a more equal ligand distribution between endosome fractions (P < or = 0.05). Analysis of the ASGP-R content revealed a distribution pattern between the endosome fractions similar to that observed for ligand distribution. Impairment of receptor-ligand dissociation was assessed in endosome fractions by determining bound/free ligand ratios. Analysis showed that most of the ligand present in both endosome fractions was free (56-99%), although more was bound to receptor in EE vs LE of both control and ethanol animals (P < or = 0.05). At 5 min, more ligand remained bound in endosomes from ethanol-fed animals compared with control endosomes (P < or = 0.05), and the same pattern was observed at the latter time point. These results suggest that delayed dissociation may cause the receptor ligand complexes to travel farther into the cell interior, which may impair proper trafficking of the ligand to lysosomes and alter the receptor recycling.
机译:使用去唾液酸糖蛋白受体(ASGP-R)和代表性的配体去唾液酸果糖类(ASOR),我们以前已经显示了乙醇诱导的内体酸化,受体回收和配体结合,内化和降解的损伤。在当前研究中,我们通过在体内用Texas-Red-ASOR或125I-ASOR标记内体,然后评估内体的受体/配体含量,进一步研究了乙醇诱导的受体/配体运输变化。我们在标记5分钟和25分钟后评估了两个部分:“早期内体”(EEs;来自细胞外围的内体)和“晚期内体”(LEs;更深进入细胞内部的内体)。在两个时间点,在从普通饲料和成对饲喂的对照(3:1,分别为EE至LE)分离的EE馏分中发现了明显更多的配体。但是,从乙醇喂养的动物中分离出的内体显示出随着时间的流逝,内体组分之间的配体分布更加均等(P <或= 0.05)。对ASGP-R含量的分析揭示了内体组分之间的分布模式与配体分布所观察到的相似。通过确定结合/游离配体比率,评估了内体组分中受体-配体解离的损害。分析表明,在两个内体组分中存在的大多数配体是游离的(56-99%),尽管对照和乙醇动物的EE vs LE中有更多的受体结合(P <或= 0.05)。与对照内体相比,在第5分钟时,乙醇喂养的动物体内的内体中仍然有更多的配体结合(P <或= 0.05),并且在后一个时间点观察到相同的模式。这些结果表明延迟解离可能导致受体配体复合物更深地进入细胞内部,这可能损害配体向溶酶体的适当运输并改变受体的再循环。

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