GENYO, Centre for Genomics and Oncological Research: Pfizer/Universidad de Granada/Junta de Andalucía, Granada, Spain.
Int J Cancer. 2013 Nov 15;133(10):2315-24. doi: 10.1002/ijc.28271. Epub 2013 Jun 13.
The extracellular protease ADAMTS1 (A disintegrin and metalloprotease with thrombospondin repeats 1) has been described as an anti-angiogenic molecule and its role as a putative tumor protective molecule has also been suggested. Here, we have used a tumor xenograft model to determine the role of ADAMTS1 in tumor growth and angiogenesis. Increasing levels of the protease led to the complete inhibition of tumor growth. In an attempt to elucidate the mechanism of action of this protease, we focused our attention on its proteolytic activity on nidogens, one of the main components of the vascular basement membrane. The increased expression of ADAMTS1 was accompanied by increased proteolysis of nidogen-1 and -2 and their almost complete removal from vascular structures, together with major morphological alterations of tumor blood vessels and a decreased vessel density. The clinical relevance of this work is supported by our observations that ADAMTS1 expression is decreased in breast tumor specimens when compared with healthy tissue. Our studies also reveal that the cleavage of nidogen-1 and -2 is partially inhibited in human tumor samples. Moreover, the deposition of both nidogens surrounding vascular structures is drastically altered, implying a possible reduction in the maintenance of vessel integrity. Our studies reflect the requirement to explore the functional interactions between proteases and specific substrates in cancer biology.
细胞外蛋白酶 ADAMTS1(解整合素和金属蛋白酶与血小板反应蛋白 1)已被描述为一种抗血管生成分子,其作为潜在的肿瘤保护分子的作用也已被提出。在这里,我们使用肿瘤异种移植模型来确定 ADAMTS1 在肿瘤生长和血管生成中的作用。增加蛋白酶的水平导致肿瘤生长的完全抑制。为了阐明这种蛋白酶的作用机制,我们将注意力集中在其对巢蛋白的蛋白水解活性上,巢蛋白是血管基底膜的主要成分之一。ADAMTS1 的表达增加伴随着巢蛋白-1 和 -2 的水解增加,它们几乎从血管结构中完全去除,同时伴有肿瘤血管的主要形态改变和血管密度降低。我们的观察结果支持了这项工作的临床相关性,即与健康组织相比,ADAMTS1 在乳腺癌肿瘤标本中的表达降低。我们的研究还表明,人肿瘤样本中巢蛋白-1 和 -2 的裂解部分受到抑制。此外,围绕血管结构的两种巢蛋白的沉积也发生了剧烈改变,这意味着血管完整性的维持可能会降低。我们的研究反映了在癌症生物学中探索蛋白酶和特定底物之间功能相互作用的必要性。