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受体相关蛋白损害了配体与近端肾小管细胞中 megalin 的结合以及依赖于 megalin 的内吞流。

Receptor-associated protein impairs ligand binding to megalin and megalin-dependent endocytic flux in proximal tubule cells.

机构信息

Renal-Electrolyte Division, University of Pittsburgh School of Medicine, Pittsburgh, Pennsylvania, United States.

出版信息

Am J Physiol Renal Physiol. 2023 Oct 1;325(4):F457-F464. doi: 10.1152/ajprenal.00165.2023. Epub 2023 Aug 3.

Abstract

Proximal tubule (PT) cells retrieve albumin and a broad array of other ligands from the glomerular ultrafiltrate. Efficient uptake of albumin requires PT expression of both megalin and cubilin receptors. Although most proteins engage cubilin selectively, megalin is required to maintain robust flux through the apical endocytic pathway. Receptor-associated protein (RAP) is a chaperone that directs megalin to the cell surface, and recombinant RAP dramatically inhibits the uptake of numerous megalin and cubilin ligands. The mechanism by which this occurs has been suggested to involve competitive inhibition of ligand binding and/or conformational changes in megalin that prevent interaction with ligands and/or with cubilin. To discriminate between these possibilities, we determined the effect of RAP on endocytosis of albumin, which binds to cubilin and megalin receptors with high and low affinity, respectively. Uptake was quantified in opossum kidney (OK) cells and in megalin or cubilin () knockout (KO) clones. Surprisingly, RAP inhibited fluid-phase uptake in addition to receptor-mediated uptake in OK cells and KO cells but had no effect on endocytosis when megalin was absent. The apparent for RAP inhibition of albumin uptake was 10-fold higher in KO cells compared with parental OK cells. We conclude that in addition to its predicted high-affinity competition for ligand binding to megalin, the primary effect of RAP on PT cell endocytosis is to globally dampen megalin-dependent endocytic flux. Our data explain the complex effects of RAP on binding and uptake of filtered proteins and reveal a novel role in modulating endocytosis in PT cells. Receptor-associated protein inhibits binding and uptake of all known endogenous ligands by megalin and cubilin receptors via unknown mechanism(s). Here, we took advantage of recently generated knockout cell lines to dissect the effect of this protein on megalin- and cubilin-mediated endocytosis. Our study reveals a novel role for receptor-associated protein in blocking megalin-stimulated endocytic uptake of fluid-phase markers and receptor-bound ligands in proximal tubule cells in addition to its direct effect on ligand binding to megalin receptors.

摘要

近曲小管 (PT) 细胞从肾小球超滤液中回收白蛋白和广泛的其他配体。白蛋白的有效摄取需要 PT 表达巨球蛋白和 Cubilin 受体。虽然大多数蛋白质选择性地与 Cubilin 结合,但巨球蛋白对于维持顶端内吞途径的强大通量是必需的。受体相关蛋白 (RAP) 是一种伴侣蛋白,可将巨球蛋白引导至细胞表面,重组 RAP 可显著抑制许多巨球蛋白和 Cubilin 配体的摄取。据推测,发生这种情况的机制涉及配体结合的竞争性抑制和/或巨球蛋白构象变化,从而阻止与配体和/或 Cubilin 的相互作用。为了区分这些可能性,我们确定了 RAP 对白蛋白内吞作用的影响,白蛋白分别以高亲和性和低亲和性与 Cubilin 和巨球蛋白受体结合。摄取量在负鼠肾 (OK) 细胞和巨球蛋白或 Cubilin () 敲除 (KO) 克隆中进行了定量。令人惊讶的是,RAP 不仅抑制了 OK 细胞和 KO 细胞中受体介导的摄取,还抑制了液相等分摄取,但在巨球蛋白缺失时对内吞作用没有影响。与亲本 OK 细胞相比,RAP 对白蛋白摄取的抑制作用的表观 在 KO 细胞中高出 10 倍。我们得出的结论是,除了其对巨球蛋白结合配体的高亲和力竞争的预期作用外,RAP 对 PT 细胞内吞作用的主要影响是全局抑制巨球蛋白依赖性内吞通量。我们的数据解释了 RAP 对滤过蛋白结合和摄取的复杂影响,并揭示了其在调节 PT 细胞内吞作用中的新作用。受体相关蛋白通过未知机制抑制所有已知内源性配体与巨球蛋白和 Cubilin 受体的结合和摄取。在这里,我们利用最近生成的 KO 细胞系来剖析该蛋白对巨球蛋白和 Cubilin 介导的内吞作用的影响。我们的研究揭示了受体相关蛋白在阻断近曲小管细胞中巨球蛋白刺激的液相等分标记和受体结合配体的内吞摄取中的新作用,除了其对巨球蛋白受体的直接配体结合作用之外。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/54a0/11905868/68fd8acda0aa/f-00165-2023r01.jpg

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