Monaco Susanna, Sparano Valentina, Gioia Magda, Sbardella Diego, Di Pierro Donato, Marini Stefano, Coletta Massimo
Department of Experimental Medicine and Biochemical Sciences, University of Roma Tor Vergata, I-00133 Roma, Italy.
Protein Sci. 2006 Dec;15(12):2805-15. doi: 10.1110/ps.062430706. Epub 2006 Nov 6.
Proteolytic degradation of basement membrane influences the cell behavior during important processes, such as inflammations, tumorigenesis, angiogenesis, and allergic diseases. In this study, we have investigated the action of gelatinase A (MMP-2) on collagen IV, the major constituent of the basement membrane. We have compared quantitatively its action on the soluble forms of collagen IV extracted with or without pepsin (from human placenta and from Engelbreth-Holm-Swarm [EHS] murine sarcoma, respectively). The catalytic efficiency of MMP-2 is dramatically reduced in the case of the EHS murine sarcoma with respect to the human placenta, probably due to the much tighter packing of the network which renders very slow the speed of the rate-limiting step. We have also enquired on the role of MMP-2 domains in processing collagen IV. Addition of the isolated collagen binding domain, corresponding to the fibronectin-like domain of whole MMP-2, greatly in hibits the cleavage process, demonstrating that MMP-2 interacts with collagen type IV preferentially through its fibronectin-like domain. Conversely, the removal of the hemopexin-like domain, using only the catalytic domain of MMP-2, has only a limited effect on the catalytic efficiency toward collagen IV, indicating that the missing domain does not have great relevance for the overall mechanism. Finally, we have investigated the effect of MMP-2 proteolytic activity ex vivo. MMP-2 action negatively affects the neutrophils' migration across type IV coated membranes and this is likely related to the production of lower molecular weight fragments that impair the cellular migration.
基底膜的蛋白水解降解在诸如炎症、肿瘤发生、血管生成和过敏性疾病等重要过程中影响细胞行为。在本研究中,我们研究了明胶酶A(基质金属蛋白酶-2,MMP-2)对基底膜主要成分IV型胶原的作用。我们定量比较了其对分别用胃蛋白酶(从人胎盘和恩格尔布雷特-霍尔姆-斯旺[EHS]小鼠肉瘤中提取)提取的IV型胶原可溶形式的作用。与人类胎盘相比,MMP-2对EHS小鼠肉瘤中IV型胶原的催化效率显著降低,这可能是由于网络结构紧密得多,使得限速步骤的速度非常缓慢。我们还探究了MMP-2结构域在加工IV型胶原中的作用。添加对应于完整MMP-2纤连蛋白样结构域的分离胶原结合结构域极大地抑制了切割过程,表明MMP-2优先通过其纤连蛋白样结构域与IV型胶原相互作用。相反,仅使用MMP-2的催化结构域去除血红素结合蛋白样结构域对其对IV型胶原的催化效率只有有限的影响,表明缺失的结构域对整体机制没有太大相关性。最后,我们研究了MMP-2蛋白水解活性的体外作用。MMP-2的作用对中性粒细胞跨IV型包被膜的迁移产生负面影响,这可能与产生损害细胞迁移的低分子量片段有关。