Kempfert Jörg, Behrends Sönke
Institute of Experimental and Clinical Pharmacology, University Clinic Hamburg-Eppendorf, Hamburg, Germany.
Platelets. 2003 Nov-Dec;14(7-8):429-35. doi: 10.1080/0953710032000141752.
Nitric oxide (NO) inhibits cell adhesion to vascular endothelium and platelet aggregation through activation of soluble guanylyl cyclase (sGC) and a consequent increase in cGMP. The aim of the present study was to analyze NO-sensitive sGC in human platelets before and after aggregation. NO-sensitive sGC activity was tested in the cytosol and membrane fractions of native human platelets and ADP-induced platelet aggregates in the presence of 3 mM Mn2+ as cofactor. After ADP-induced platelet aggregation there was a significant increase of sGC activity in membranes. Western blot analysis showed a partial translocation of the enzyme to the plasma membrane. These findings support recent data that sGC is associated with cellular membranes in various tissues and cell types and that this membrane association is influenced by the activation state in human platelets (Nat Cell Biol 2002; 4: 307-11). Using 3 mM Mg2+ instead of Mn2+ as cofactor, a sharp decrease of sGC activity was apparent in the cytosol of aggregated platelets. Kinetic analysis of the cytosolic enzyme and concentration-response curves for free Mg2+ showed that platelet aggregation changes binding of free Mg2+ but not binding of the substrate complex Mg.GTP. This effect was specific for free Mg2+ and was not seen for Mn2+. In addition, changes in free Mg2+ concentration in a physiological range markedly influenced NO-stimulated sGC activity. This provides a possible explanation for the increased platelet aggregability in patients with low intraplatelet Mg2+ levels.
一氧化氮(NO)通过激活可溶性鸟苷酸环化酶(sGC)并随之增加环磷酸鸟苷(cGMP)来抑制细胞与血管内皮的黏附以及血小板聚集。本研究的目的是分析人血小板聚集前后对NO敏感的sGC。在存在3 mM Mn2+作为辅因子的情况下,对天然人血小板和ADP诱导的血小板聚集体的胞质溶胶和膜部分进行了对NO敏感的sGC活性测试。ADP诱导血小板聚集后,膜中sGC活性显著增加。蛋白质印迹分析显示该酶部分易位至质膜。这些发现支持了最近的数据,即sGC与各种组织和细胞类型中的细胞膜相关,并且这种膜结合受人类血小板激活状态的影响(《自然细胞生物学》2002年;4:307 - 11)。使用3 mM Mg2+代替Mn2+作为辅因子时,聚集血小板的胞质溶胶中sGC活性明显急剧下降。对胞质酶的动力学分析以及游离Mg2+的浓度 - 反应曲线表明,血小板聚集改变了游离Mg2+的结合,但未改变底物复合物Mg.GTP的结合。这种效应是游离Mg2+特有的,Mn2+未出现此现象。此外,生理范围内游离Mg2+浓度的变化显著影响NO刺激的sGC活性。这为血小板内Mg2+水平低的患者血小板聚集性增加提供了一种可能的解释。