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Mechanism of Heparin Acceleration of Tissue Inhibitor of Metalloproteases-1 (TIMP-1) Degradation by the Human Neutrophil Elastase

机译:人类嗜中性粒细胞弹性蛋白酶降解金属蛋白酶-1(TIMP-1)的组织抑制肝素的机制。

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摘要

Heparin has been shown to regulate human neutrophil elastase (HNE) activity. We have assessed the regulatory effect of heparin on Tissue Inhibitor of Metalloproteases-1 [TIMP-1] hydrolysis by HNE employing the recombinant form of TIMP-1 and correlated FRET-peptides comprising the TIMP-1 cleavage site. Heparin accelerates 2.5-fold TIMP-1 hydrolysis by HNE. the kinetic parameters of this reaction were monitored with the aid of a FRET-peptide substrate that mimics the TIMP-1 cleavage site in pre-steady-state conditionsby using a stopped-flow fluorescence system. the hydrolysis of the FRET-peptide substrate by HNE exhibits a pre-steady-state burst phase followed by a linear, steady-state pseudo-first-order reaction. the HNE acylation step (k(2)=21 +/- 1 s(-1)) was much higher than the HNE deacylation step (k(3)=0.57 +/- 0.05 s(-1)). the presence of heparin induces a dramatic effect in the pre-steady-state behavior of HNE. Heparin induces transient lag phase kinetics in HNE cleavage of the FRET-peptide substrate. the pre-steady-state analysis revealed that heparin affects all steps of the reaction through enhancing the ES complex concentration, increasing k(1) 2.4-fold and reducing k(-1) 3.1-fold. Heparin also promotes a 7.8-fold decrease in the k(2) value, whereas the k(3) value in the presence of heparin was increased 58-fold. These results clearly show that heparin binding accelerates deacylation and slows down acylation. Heparin shifts the HNE pH activity profile to the right, allowing HNE to be active at alkaline pH. Molecular docking and kinetic analysis suggest that heparin induces conformational changes in HNE structure. Here, we are showing for the first time that heparin is able to accelerate the hydrolysis of TIMP-1 by HNE. the degradation of TIMP-1is associated to important physiopathological states involving excessive activation of MMPs.
机译:肝素已被证明可调节人中性粒细胞弹性蛋白酶(HNE)的活性。我们使用重组形式的TIMP-1和包含TIMP-1切割位点的相关FRET肽,评估了肝素对HNE水解金属蛋白酶-1 [TIMP-1]的组织抑制剂的调节作用。肝素通过HNE促进2.5倍TIMP-1水解。通过使用FRET-肽底物来监测该反应的动力学参数,该底物模拟稳态前条件下的TIMP-1裂解位点,方法是使用停流荧光系统。 HNE对FRET肽底物的水解表现出预稳态猝发相,随后发生线性,稳态伪一阶反应。 HNE酰化步骤(k(2)= 21 +/- 1 s(-1))比HNE酰化步骤(k(3)= 0.57 +/- 0.05 s(-1))高得多。肝素的存在对HNE的稳态前行为具有显着影响。肝素在FRET肽底物的HNE裂解中诱导瞬时滞后阶段动力学。稳态前分析表明,肝素通过增强ES复合物浓度,增加k(1)2.4倍和降低k(-1)3.1倍来影响反应的所有步骤。肝素还促进k(2)值下降7.8倍,而在肝素存在下k(3)值增加58倍。这些结果清楚地表明,肝素结合可加速脱酰作用并减慢酰化作用。肝素使HNE pH活性曲线向右移动,从而使HNE在碱性pH下具有活性。分子对接和动力学分析表明肝素诱导HNE结构的构象变化。在这里,我们首次展示了肝素能够加速HNE对TIMP-1的水解。 TIMP-1的降解与涉及MMPs过度活化的重要生理病理状态有关。

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