Laggner Hilde, Hermann Marcela, Esterbauer Harald, Muellner Markus K, Exner Markus, Gmeiner Bernhard Mk, Kapiotis Stylianos
Centre of Physiology and Pathophysiology, Department of Medical Chemistry, Austria.
J Hypertens. 2007 Oct;25(10):2100-4. doi: 10.1097/HJH.0b013e32829b8fd0.
Beside NO (nitric monoxide) and CO (carbon monoxide), H2S (hydrogen sulfide) has been identified recently as the third gasotransmitter. By acting directly on KATP-channels on smooth muscle cells (SMC) H2S possesses vasorelaxing properties. It has the potential to react with metal ions (i.e. Cu, Fe, Zn) in metalloproteins. Angiotensin-converting enzyme (ACE), responsible for vasoconstriction, is a zinc (Zn) containing enzyme. We therefore hypothesized that H2S may interact with the Zn in the active center of ACE, modulating (inhibiting) enzyme activity.
ACE activity was measured on the surface of human endothelial cells (HUVECs) monolayers in culture, ex-vivo in umbilical veins and in HUVEC protein extracts. Quantitative real-time polymerase chain reaction (PCR) was used to study the effect of H2S on ACE mRNA expression in HUVECs.
H2S inhibited the activity of ACE in HUVEC protein extracts in a dose-dependent manner, and only Zn but not Cd, Ca or Mg could counteract the inhibitory effect. Cell-surface ACE activity was inhibited by H2S on HUVEC monolayers and in ex-vivo umbilical veins. No influence of H2S on ACE mRNA expression was observed.
H2S exhibits direct inhibitory action on ACE activity in HUVECs, obviously by interfering with the Zn in the active center of the enzyme. Thus, beside the known influence of H2S on SMC KATP-channels, the observed direct ACE inhibitory effect may add to the vasorelaxant effect of H2S in the vasculature by reducing angiotensin II production and inhibiting bradykinin degradation.
除一氧化氮(NO)和一氧化碳(CO)外,硫化氢(H2S)最近被确认为第三种气体信号分子。H2S通过直接作用于平滑肌细胞(SMC)上的ATP敏感性钾通道(KATP通道)而具有血管舒张特性。它有可能与金属蛋白中的金属离子(如铜、铁、锌)发生反应。负责血管收缩的血管紧张素转换酶(ACE)是一种含锌(Zn)酶。因此,我们推测H2S可能与ACE活性中心的锌相互作用,调节(抑制)酶的活性。
在体外培养的人脐静脉内皮细胞(HUVECs)单层表面、脐静脉离体组织以及HUVEC蛋白提取物中测量ACE活性。采用定量实时聚合酶链反应(PCR)研究H2S对HUVECs中ACE mRNA表达的影响。
H2S以剂量依赖性方式抑制HUVEC蛋白提取物中的ACE活性,只有锌而不是镉、钙或镁能够抵消这种抑制作用。H2S抑制HUVEC单层细胞表面和脐静脉离体组织中的ACE活性。未观察到H2S对ACE mRNA表达有影响。
H2S对HUVECs中的ACE活性具有直接抑制作用,显然是通过干扰该酶活性中心的锌来实现的。因此,除了已知的H2S对SMC的KATP通道的影响外,观察到的直接ACE抑制作用可能通过减少血管紧张素II的产生和抑制缓激肽的降解,增强H2S在脉管系统中的血管舒张作用。