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Carcinomas Contain a Matrix Metalloproteinase–Resistant Isoform of Type I Collagen Exerting Selective Support to Invasion

基质金属蛋白酶 间质细胞 癌细胞 癌症 转移 癌症研究 Ⅰ型胶原 化学 肿瘤微环境 细胞培养 细胞生物学 细胞外基质 促炎细胞因子 生物 病理 免疫学 生物化学 医学 炎症 遗传学
作者
Elena Makareeva,Sejin Han,Juan C. Vera,Dan L. Sackett,Kenn Holmbeck,Charlotte L. Phillips,Robert Visse,Hideaki Nagase,Sergey Leikin
出处
期刊:Cancer Research [American Association for Cancer Research]
卷期号:70 (11): 4366-4374 被引量:103
标识
DOI:10.1158/0008-5472.can-09-4057
摘要

Collagen fibers affect metastasis in two opposing ways, by supporting invasive cells but also by generating a barrier to invasion. We hypothesized that these functions might be performed by different isoforms of type I collagen. Carcinomas are reported to contain alpha1(I)(3) homotrimers, a type I collagen isoform normally not present in healthy tissues, but the role of the homotrimers in cancer pathophysiology is unclear. In this study, we found that these homotrimers were resistant to all collagenolytic matrix metalloproteinases (MMP). MMPs are massively produced and used by cancer cells and cancer-associated fibroblasts for degrading stromal collagen at the leading edge of tumor invasion. The MMP-resistant homotrimers were produced by all invasive cancer cell lines tested, both in culture and in tumor xenografts, but they were not produced by cancer-associated fibroblasts, thereby comprising a specialized fraction of tumor collagen. We observed the homotrimer fibers to be resistant to pericellular degradation, even upon stimulation of the cells with proinflammatory cytokines. Furthermore, we confirmed an enhanced proliferation and migration of invasive cancer cells on the surface of homotrimeric versus normal (heterotrimeric) type I collagen fibers. In summary, our findings suggest that invasive cancer cells may use homotrimers for building MMP-resistant invasion paths, supporting local proliferation and directed migration of the cells whereas surrounding normal stromal collagens are cleaved. Because the homotrimers are universally secreted by cancer cells and deposited as insoluble, MMP-resistant fibers, they offer an appealing target for cancer diagnostics and therapy.
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