Department of Biochemistry, College of Life Science and Biotechnology, Yonsei University, Seoul 120-749, Korea.
J Biol Chem. 2010 Dec 31;285(53):41270-9. doi: 10.1074/jbc.M110.171595. Epub 2010 Nov 1.
Like most metalloproteases, matrix metalloprotease 2 (MMP-2) is synthesized as a zymogen. MMP-2 propeptide plays a role in inhibition of catalytic activity through a cysteine-zinc ion pairing, disruption of which results in full enzyme activation. A variety of proteases have been shown to be involved in the activation of pro-MMP-2, including metalloproteases and serine proteases. In the previous study we showed that MMP-2 activation occurred via specific cleavages of the propeptide by thrombin followed by intermolecular autoproteolytic processing for full enzymatic activity. Thrombin also degraded MMP-2, but this degradation was reduced greatly under cell-associated conditions with a concomitant increase in activation, prompting us to elucidate the molecular mechanisms underlying thrombin-mediated MMP-2 activation. In the present study we demonstrate that heparan sulfate is essential for thrombin-mediated activation of pro-MMP-2. Binding of heparan sulfate to thrombin is primarily responsible for this activation process, presumably through conformational changes at the active site. Furthermore, interaction of MMP-2 with exosites 1 and 2 of thrombin is crucial for thrombin-mediated MMP-2 degradation, and inhibition of this interaction by heparan sulfate or hirudin fragment results in a decrease in MMP-2 degradation. Finally, we demonstrated interaction between exosite 1 and hemopexin-like domain of MMP-2, suggesting a regulatory role of hemopexin-like domain in MMP-2 degradation. Taken together, our experimental data suggest a novel regulatory mechanism of thrombin-dependent MMP-2 enzymatic activity by heparan sulfate proteoglycans.
与大多数金属蛋白酶一样,基质金属蛋白酶 2(MMP-2)作为酶原合成。MMP-2 前肽通过半胱氨酸-锌离子配对在抑制催化活性中发挥作用,破坏该配对会导致酶的完全激活。已经证明多种蛋白酶参与 pro-MMP-2 的激活,包括金属蛋白酶和丝氨酸蛋白酶。在之前的研究中,我们表明 MMP-2 的激活是通过凝血酶特异性切割前肽,然后通过分子间自切割进行完全酶活性。凝血酶也会降解 MMP-2,但在细胞相关条件下,这种降解大大减少,同时激活增加,促使我们阐明凝血酶介导的 MMP-2 激活的分子机制。在本研究中,我们证明肝素硫酸盐对于凝血酶介导的 pro-MMP-2 的激活是必需的。肝素硫酸盐与凝血酶的结合主要负责该激活过程,可能是通过活性部位的构象变化。此外,MMP-2 与凝血酶的外位 1 和 2 的相互作用对于凝血酶介导的 MMP-2 降解至关重要,并且肝素硫酸盐或水蛭素片段抑制这种相互作用会导致 MMP-2 降解减少。最后,我们证明了外位 1 与 MMP-2 的血红素结合蛋白样结构域之间的相互作用,表明血红素结合蛋白样结构域在 MMP-2 降解中的调节作用。总之,我们的实验数据表明肝素硫酸盐蛋白聚糖通过凝血酶依赖性 MMP-2 酶活性的一种新的调节机制。