INSERM, UMR 1100, Pathologies Respiratoires: protéolyse et aérosolthérapie, Centre d'Etude des Pathologies Respiratoires, Université François Rabelais , F-37032 Tours cedex, France.
Biochemistry. 2013 Sep 17;52(37):6487-98. doi: 10.1021/bi400925g. Epub 2013 Sep 4.
Human cysteine cathepsin S (catS) participates in distinct physiological and pathophysiological cellular processes and is considered as a valuable therapeutic target in autoimmune diseases, cancer, atherosclerosis, and asthma. We evaluated the capacity of negatively charged glycosaminoglycans (heparin, heparan sulfate, chondroitin 4/6-sulfates, dermatan sulfate, and hyaluronic acid) to modulate the activity of catS. Chondroitin 4-sulfate (C4-S) impaired the collagenolytic activity (type IV collagen) and inhibited the peptidase activity (Z-Phe-Arg-AMC) of catS at pH 5.5, obeying a mixed-type mechanism (estimated Ki = 16.5 ± 6 μM). Addition of NaCl restored catS activity, supporting the idea that electrostatic interactions are primarly involved. Furthermore, C4-S delayed in a dose-dependent manner the maturation of procatS at pH 4.0 by interfering with the intermolecular processing pathway. Binding of C4-S to catS was demonstrated by gel-filtration chromatography, and its affinity was measured by surface plasmon resonance (equilibrium dissociation constant Kd = 210 ± 40 nM). Moreover, C4-S induced subtle conformational changes in mature catS as observed by intrinsic fluorescence spectroscopy analysis. Molecular docking predicted three specific binding sites on catS for C4-S that are different from those found in the crystal structure of the cathepsin K-C4-S complex. Overall, these results describe a novel glycosaminoglycan-mediated mechanism of catS inhibition and suggest that C4-S may modulate the collagenase activity of catS in vivo.
人半胱氨酸组织蛋白酶 S(catS)参与多种生理和病理细胞过程,被认为是自身免疫性疾病、癌症、动脉粥样硬化和哮喘等疾病的有价值的治疗靶点。我们评估了带负电荷的糖胺聚糖(肝素、硫酸乙酰肝素、硫酸软骨素 4/6、硫酸皮肤素和透明质酸)对 catS 活性的调节能力。硫酸软骨素 4 硫酸盐(C4-S)在 pH 5.5 时损害胶原蛋白酶活性(IV 型胶原蛋白)并抑制 catS 的肽酶活性(Z-Phe-Arg-AMC),遵循混合机制(估计 Ki = 16.5 ± 6 μM)。添加 NaCl 恢复了 catS 活性,支持静电相互作用是主要因素的观点。此外,C4-S 通过干扰分子间加工途径,以剂量依赖的方式延迟 procatS 在 pH 4.0 下的成熟。通过凝胶过滤色谱法证明了 C4-S 与 catS 的结合,并用表面等离子体共振(平衡解离常数 Kd = 210 ± 40 nM)测量了其亲和力。此外,C4-S 通过内源荧光光谱分析观察到成熟 catS 的细微构象变化。分子对接预测了 C4-S 在 catS 上的三个特定结合位点,这些结合位点与在 cathepsin K-C4-S 复合物的晶体结构中发现的不同。总之,这些结果描述了 catS 抑制的新型糖胺聚糖介导机制,并表明 C4-S 可能在体内调节 catS 的胶原酶活性。