Collagen endocytosis

  • 文章类型: Journal Article
    已显示,恶性肿瘤中细胞外基质的重塑增加与肿瘤侵袭性和不良预后相关。这种重塑涉及原始细胞外基质(ECM)的降解和新的支持肿瘤的ECM的沉积。ECM的主要成分是胶原蛋白,胶原蛋白周转主要以顺序方式发生,其中不溶性纤维的初始蛋白水解裂解随后是大的明确定义的胶原片段的细胞内化以用于溶酶体降解。然而,尽管在该领域进行了广泛的研究,关于肿瘤微环境中哪些细胞类型表达相关蛋白酶的共识仍然存在。此外,不同细胞类型对胶原内化的相对贡献尚不明确.这里,我们开发了定量的离体胶原降解试验,并显示在两个小鼠同系肿瘤模型中,负责胶原初始裂解的蛋白酶是由癌症相关成纤维细胞产生的基质金属蛋白酶,并且胶原降解片段主要被来自肿瘤基质的肿瘤相关巨噬细胞和癌症相关成纤维细胞胞吞.利用甘露糖受体缺陷小鼠的肿瘤,我们表明,这种受体对于肿瘤相关巨噬细胞的胶原内化至关重要。一起,这些发现确定了负责整个胶原蛋白降解途径的细胞类型,从最初的裂解到细胞内降解片段的内吞。
    Increased remodeling of the extracellular matrix in malignant tumors has been shown to correlate with tumor aggressiveness and a poor prognosis. This remodeling involves degradation of the original extracellular matrix (ECM) and deposition of a new tumor-supporting ECM. The main constituent of the ECM is collagen and collagen turnover mainly occurs in a sequential manner, where initial proteolytic cleavage of the insoluble fibers is followed by cellular internalization of large well-defined collagen fragments for lysosomal degradation. However, despite extensive research in the field, a lack of consensus on which cell types within the tumor microenvironment express the involved proteases still exists. Furthermore, the relative contribution of different cell types to collagen internalization is not well-established. Here, we developed quantitative ex vivo collagen degradation assays and show that the proteases responsible for the initial collagen cleavage in two murine syngeneic tumor models are matrix metalloproteinases produced by cancer-associated fibroblasts and that collagen degradation fragments are endocytosed primarily by tumor-associated macrophages and cancer-associated fibroblasts from the tumor stroma. Using tumors from mannose receptor-deficient mice, we show that this receptor is essential for collagen-internalization by tumor-associated macrophages. Together, these findings identify the cell types responsible for the entire collagen degradation pathway, from initial cleavage to endocytosis of fragments for intracellular degradation.
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  • 文章类型: Journal Article
    作为细胞外基质(ECM)的主要成分,不同类型的胶原蛋白对组织的结构特性至关重要,并构成细胞粘附和迁移的支架。重要的是,胶原蛋白还通过传递影响增殖的信号直接调节细胞的表型状态,分化,极化,生存,还有更多,间充质细胞,上皮,或内皮起源。最近,胶原蛋白提供免疫调节信号的潜力也已被证明,并认为ECM形状免疫细胞表型的病理变化。胶原蛋白本身受到多种结构调节或分解代谢途径的严重调节。这些途径之一涉及由内吞胶原受体介导的先天性免疫系统的胶原或可溶性胶原样防御胶原的细胞摄取。这种细胞摄取之后是溶酶体中胶原的降解。该途径在病理条件下调节胶原蛋白的潜力从内吞胶原蛋白受体消融后胶原蛋白和胶原蛋白样防御胶原蛋白的细胞外积累增加明显。这里,我们回顾了内吞胶原受体如何在生理条件和病理条件下调节胶原周转,如纤维化和癌症。此外,我们强调了胶原蛋白调节免疫细胞的潜力,并讨论了内吞胶原蛋白受体如何在病理条件下直接调节免疫细胞活性或通过改变细胞外环境间接调节免疫细胞活性。最后,我们讨论了免疫细胞利用潜在的胶原受体来直接检测它们遇到的组织中与ECM相关的变化。
    As the dominant constituent of the extracellular matrix (ECM), collagens of different types are critical for the structural properties of tissues and make up scaffolds for cellular adhesion and migration. Importantly, collagens also directly modulate the phenotypic state of cells by transmitting signals that influence proliferation, differentiation, polarization, survival, and more, to cells of mesenchymal, epithelial, or endothelial origin. Recently, the potential of collagens to provide immune regulatory signals has also been demonstrated, and it is believed that pathological changes in the ECM shape immune cell phenotype. Collagens are themselves heavily regulated by a multitude of structural modulations or by catabolic pathways. One of these pathways involves a cellular uptake of collagens or soluble collagen-like defense collagens of the innate immune system mediated by endocytic collagen receptors. This cellular uptake is followed by the degradation of collagens in lysosomes. The potential of this pathway to regulate collagens in pathological conditions is evident from the increased extracellular accumulation of both collagens and collagen-like defense collagens following endocytic collagen receptor ablation. Here, we review how endocytic collagen receptors regulate collagen turnover during physiological conditions and in pathological conditions, such as fibrosis and cancer. Furthermore, we highlight the potential of collagens to regulate immune cells and discuss how endocytic collagen receptors can directly regulate immune cell activity in pathological conditions or do it indirectly by altering the extracellular milieu. Finally, we discuss the potential collagen receptors utilized by immune cells to directly detect ECM-related changes in the tissues which they encounter.
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  • 文章类型: Journal Article
    间质胶原的生理更新是由一个序贯途径介导的,其中胶原被细胞周胶原酶片段化。被胶原蛋白受体内吞,并送至溶酶体以被组织蛋白酶降解。这里,我们使用活体显微镜来调查恶性肿瘤,其特点是细胞外基质周转率高,利用类似的胶原降解途径。上皮性肿瘤,间充质,或神经c起源都显示出剧烈的内吞胶原降解。参与该过程的细胞被鉴定为肿瘤相关巨噬细胞(TAM)样细胞,其以甘露糖受体依赖性方式降解胶原。因此,甘露糖受体缺陷型小鼠显示瘤内胶原增加。全转录组分析揭示了这些胶原蛋白降解TAM的独特的细胞外基质分解代谢特征。谱系消融研究表明,胶原蛋白降解TAM起源于循环CCR2单核细胞。这项研究确定了TAM在通过内吞胶原蛋白周转改变肿瘤微环境中的功能,并将巨噬细胞确立为参与肿瘤相关胶原蛋白降解的中心。
    Physiologic turnover of interstitial collagen is mediated by a sequential pathway in which collagen is fragmented by pericellular collagenases, endocytosed by collagen receptors, and routed to lysosomes for degradation by cathepsins. Here, we use intravital microscopy to investigate if malignant tumors, which are characterized by high rates of extracellular matrix turnover, utilize a similar collagen degradation pathway. Tumors of epithelial, mesenchymal, or neural crest origin all display vigorous endocytic collagen degradation. The cells engaged in this process are identified as tumor-associated macrophage (TAM)-like cells that degrade collagen in a mannose receptor-dependent manner. Accordingly, mannose-receptor-deficient mice display increased intratumoral collagen. Whole-transcriptome profiling uncovers a distinct extracellular matrix-catabolic signature of these collagen-degrading TAMs. Lineage-ablation studies reveal that collagen-degrading TAMs originate from circulating CCR2+ monocytes. This study identifies a function of TAMs in altering the tumor microenvironment through endocytic collagen turnover and establishes macrophages as centrally engaged in tumor-associated collagen degradation.
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  • 文章类型: Journal Article
    我们最近描述了一种在体内成像间质胶原降解的方法,这允许在病理和生理组织重塑过程中鉴定参与胶原蛋白周转的细胞类型和分子。该测定揭示了M2极化巨噬细胞在细胞外基质周转中受体介导的细胞内胶原降解的主导作用。
    We have recently described an assay for imaging interstitial collagen degradation in vivo, which allows for the identification of cell types and molecules involved in collagen turnover in the course of pathological and physiological tissue remodeling. The assay revealed a dominant role of receptor-mediated intracellular collagen degradation by M2-polarized macrophages in extracellular matrix turnover.
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