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The Collagen Binding Domain of Gelatinase A Modulates Degradation of Collagen IV by Gelatinase B

机译:明胶酶A的胶原结合域调节明胶酶B对胶原IV的降解

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摘要

Type IV collagen remodeling plays a critical role in inflammatory responses, angiogenesis and metastasis. Its remodeling is executed by a family of matrix metalloproteinases (MMPs), of which the constitutive gelatinase A (MMP2) and the inducible gelatinase B (MMP9) are key examples. Thus, in many pathological conditions, both gelatinases act together. Kinetic data are reported for the enzymatic processing at 37 degrees C of type IV collagen from human placenta by MMP9 and its modulation by the fibronectin-like collagen binding domain (CBD) of MMP2. The alpha l and alpha 2 chain components of type IV collagen were cleaved by gelatinases and identified by mass spectrometry as well as Edman sequencing. Surface plasmon resonance interaction assays showed that CBD bound type IV collagen at two topologically distinct sites. On the basis of linked-function analysis, we demonstrated that CBD of MMP2 tuned the cleavage of collagen IV by MMP9, presumably by inducing a ligand-linked structural change on the type IV collagen. At low, concentrations, the CBD bound the first site and thereby allosterically modulated the binding of MMP9 to collagen IV, thus enhancing the collagenolytic activity of MMP9. At high concentrations, CBD binding to the second site interfered with MMP9 binding to collagen IV, acting as a competitive inhibitor. Interestingly, modulation of collagen IV degradation by inactive forms of MMP2 also occurred in a cell-based system, revealing that this interrelationship affected neutrophil migration across a collagen IV membrane. The regulation of the proteolytic processing by a catalytically inactive domain (i.e., CBD) suggests that the two gelatinases might cooperate in degrading substrates even when either one is inactive. This observation reinforces the idea of exosite targets for MMP inhibitors, which should include all macromolecular substrate recognition sites
机译:IV型胶原重塑在炎症反应,血管生成和转移中起关键作用。它的重塑由基质金属蛋白酶(MMP)家族执行,其中组成型明胶酶A(MMP2)和诱导型明胶酶B(MMP9)是关键实例。因此,在许多病理状况下,两种明胶酶共同起作用。动力学数据据报道是在37摄氏度下通过MMP9在人胎盘中对IV型胶原蛋白进行酶处理以及通过MMP2的纤连蛋白样胶原结合域(CBD)对其进行调节的动力学数据。 IV型胶原的α1和α2链成分被明胶酶切割并通过质谱法和埃德曼测序法鉴定。表面等离振子共振相互作用测定表明,CBD在两个拓扑不同的位点结合IV型胶原。在链接功能分析的基础上,我们证明了MMP2的CBD可能通过诱导IV型胶原上的配体链接结构变化来调节MMP9对IV型胶原的切割。在低浓度下,CBD会结合第一个位点,从而变构地调节MMP9与胶原IV的结合,从而增强MMP9的胶原分解活性。在高浓度下,CBD与第二个位点的结合会干扰MMP9与胶原IV的结合,从而起到竞争性抑制剂的作用。有趣的是,非活性形式的MMP2对胶原IV降解的调节也发生在基于细胞的系统中,表明这种相互关系影响了嗜中性粒细胞跨胶原IV膜的迁移。催化失活域(即CBD)对蛋白水解过程的调节表明,即使其中一个失活,两种明胶酶也可能协同降解底物。该观察结果强化了MMP抑制剂异位靶标的想法,该靶标应包括所有大分子底物识别位点

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