Institute of Life Course and Medical Sciences, William Henry Duncan Building, University of Liverpool, 6 West Derby Street, Liverpool L7 8TX, United Kingdom.
Department of Molecular Biology and Genetics, Aarhus University, Aarhus 8000, Denmark.
Matrix Biol. 2022 Sep;112:190-218. doi: 10.1016/j.matbio.2022.08.007. Epub 2022 Aug 24.
The low-density lipoprotein receptor-related protein 1 (LRP1) is a cell-surface receptor ubiquitously expressed in various tissues. It plays tissue-specific roles by mediating endocytosis of a diverse range of extracellular molecules. Dysregulation of LRP1 is involved in multiple conditions including osteoarthritis (OA) but little information is available about the specific profile of direct binding partners of LRP1 (ligandome) for each tissue, which would lead to a better understanding of its role in disease states. Here, we investigated adult articular cartilage where impaired LRP1-mediated endocytosis leads to tissue destruction. We used a top-down approach involving proteomic analysis of the LRP1 interactome in human chondrocytes, direct binding assays using purified LRP1 and ligand candidates, and validation in LRP1-deficient fibroblasts and human chondrocytes, as well as a novel Lrp1 conditional knockout (KO) mouse model. We found that inhibition of LRP1 and ligand interaction results in cell death, alteration of the entire secretome and transcriptional modulations in human chondrocytes. We identified a chondrocyte-specific LRP1 ligandome consisting of more than 50 novel ligand candidates. Surprisingly, 23 previously reported LRP1 ligands were not regulated by LRP1-mediated endocytosis in human chondrocytes. We confirmed direct LRP1 binding of HGFAC, HMGB1, HMGB2, CEMIP, SLIT2, ADAMTS1, TSG6, IGFBP7, SPARC and LIF, correlation between their affinity for LRP1 and the rate of endocytosis, and some of their intracellular localization. Moreover, a conditional LRP1 KO mouse model demonstrated a critical role of LRP1 in regulating the high-affinity ligands in cartilage in vivo. This systematic approach revealed the specificity and the extent of the chondrocyte LRP1 ligandome and identified potential novel therapeutic targets for OA.
低密度脂蛋白受体相关蛋白 1(LRP1)是一种广泛表达于各种组织的细胞表面受体。它通过介导各种细胞外分子的内吞作用,发挥组织特异性作用。LRP1 的失调与多种疾病有关,包括骨关节炎(OA),但对于每种组织中 LRP1 的直接结合伴侣(配体组)的具体特征知之甚少,这将有助于更好地了解其在疾病状态下的作用。在这里,我们研究了成人关节软骨,其中受损的 LRP1 介导的内吞作用导致组织破坏。我们使用了一种自上而下的方法,涉及人软骨细胞中 LRP1 相互作用组的蛋白质组学分析、使用纯化的 LRP1 和配体候选物进行的直接结合测定,以及在 LRP1 缺陷型成纤维细胞和人软骨细胞中的验证,以及一种新型 Lrp1 条件性敲除(KO)小鼠模型。我们发现抑制 LRP1 和配体相互作用会导致人软骨细胞死亡、整个分泌组改变和转录调节。我们确定了一个由 50 多个新的配体候选物组成的软骨细胞特异性 LRP1 配体组。令人惊讶的是,23 种先前报道的 LRP1 配体在人软骨细胞中不受 LRP1 介导的内吞作用调节。我们证实了 HGFAC、HMGB1、HMGB2、CEMIP、SLIT2、ADAMTS1、TSG6、IGFBP7、SPARC 和 LIF 与 LRP1 的直接结合,以及它们与内吞作用速率的相关性,以及它们的一些细胞内定位。此外,条件性 LRP1 KO 小鼠模型证明了 LRP1 在体内调节软骨中高亲和力配体的关键作用。这种系统方法揭示了软骨细胞 LRP1 配体组的特异性和范围,并确定了 OA 的潜在新治疗靶点。