School of Medicine and Surgery, University of Milano-Bicocca, Monza, Italy.
Institute for Biomedical Technologies, National Research Council, Segrate, Italy.
Am J Pathol. 2016 Sep;186(9):2473-85. doi: 10.1016/j.ajpath.2016.05.019. Epub 2016 Jul 19.
Human clear cell renal cell carcinoma (ccRCC) is therapy resistant; therefore, it is worthwhile studying in depth the molecular aspects of its progression. In ccRCC the biallelic inactivation of the VHL gene leads to stabilization of hypoxia-inducible factors (HIFs). Among the targets of HIF-1α transcriptional activity is the LOX gene, which codes for the inactive proenzyme (Pro-Lox) from which, after extracellular secretion and proteolysis, derives the active enzyme (Lox) and the propeptide (Lox-PP). By increasing stiffness of extracellular matrix by collagen crosslinking, Lox promotes tumor progression and metastasis. Lox and Lox-PP can reenter the cells where Lox promotes cell proliferation and invasion, whereas Lox-PP acts as tumor suppressor because of its Ras recision and apoptotic activity. Few data are available concerning LOX in ccRCC. Using an in vitro model of ccRCC primary cell cultures, we performed, for the first time in ccRCC, a detailed study of endogenous LOX and also investigated their transcriptomic profile. We found that endogenous LOX is overexpressed in ccRCC, is involved in a positive-regulative loop with HIF-1α, and has a major action on ccRCC progression through cellular adhesion, migration, and collagen matrix stiffness increment; however, the oncosuppressive action of Lox-PP was not found to prevail. These findings may suggest translational approaches for new therapeutic strategies in ccRCC.
人肾透明细胞癌(ccRCC)对治疗有抗性;因此,深入研究其进展的分子方面是值得的。在 ccRCC 中,VHL 基因的双等位基因失活导致缺氧诱导因子(HIFs)的稳定。HIF-1α 转录活性的靶标之一是 LOX 基因,该基因编码无活性的前酶(Pro-Lox),前酶在细胞外分泌和蛋白水解后衍生出活性酶(Lox)和前肽(Lox-PP)。通过胶原交联增加细胞外基质的硬度,Lox 促进肿瘤的进展和转移。Lox 和 Lox-PP 可以重新进入细胞,其中 Lox 促进细胞增殖和侵袭,而 Lox-PP 作为肿瘤抑制因子发挥作用,因为其 Ras 切割和凋亡活性。关于 ccRCC 中的 LOX,只有很少的数据。我们使用 ccRCC 原代细胞培养物的体外模型,首次在 ccRCC 中对内源性 LOX 进行了详细研究,并研究了它们的转录组特征。我们发现内源性 LOX 在 ccRCC 中过度表达,与 HIF-1α 形成正调节环,通过细胞黏附、迁移和胶原基质硬度增加对 ccRCC 进展具有主要作用;然而,未发现 Lox-PP 的肿瘤抑制作用占主导地位。这些发现可能为 ccRCC 的新治疗策略提供转化方法。