Serfass L, Carr H S, Aschenbrenner L M, Burstyn J N
Department of Chemistry, University of Wisconsin--Madison, 53706, USA.
Arch Biochem Biophys. 2001 Mar 1;387(1):47-56. doi: 10.1006/abbi.2000.2090.
The inhibition of soluble guanylyl cyclase by Ca2+ has been kinetically characterized and the results support a two-metal-ion catalytic mechanism for formation of cGMP. Ca2+ reversibly inhibits both the basal and NO-stimulated forms of bovine lung soluble guanylyl cyclase. Inhibition is independent of the activator identity and concentration, revealing that Ca2+ interacts with a site independent of the heme regulatory site. Inhibition by Ca2+ is competitive with respect to Mg2+ in excess of substrate, with Kis values of 29 +/- 4 and 6.6 +/- 0.6 microM for the basal and activated states, respectively. Ca2+ inhibits noncompetitively with respect to the substrate MgGTP in both activity states. The qualitatively similar inhibition pattern and quantitatively different Ki values between the basal and NO-stimulated states suggest that the Ca2+ binding site undergoes some structural modification upon activation of the enzyme. The competitive nature of Ca2+ inhibition with respect to excess Mg2+ is consistent with a two-metal-ion mechanism for cyclization.
已对Ca2+对可溶性鸟苷酸环化酶的抑制作用进行了动力学表征,结果支持cGMP形成的双金属离子催化机制。Ca2+可逆地抑制牛肺可溶性鸟苷酸环化酶的基础形式和NO刺激形式。抑制作用与激活剂的身份和浓度无关,这表明Ca2+与血红素调节位点无关的位点相互作用。在底物过量的情况下,Ca2+对Mg2+的抑制作用具有竞争性,基础状态和激活状态的Kis值分别为29±4和6.6±0.6μM。在两种活性状态下,Ca2+对底物MgGTP均表现为非竞争性抑制。基础状态和NO刺激状态之间在抑制模式上定性相似但Ki值在数量上不同,这表明Ca2+结合位点在酶激活后发生了一些结构修饰。Ca2+对过量Mg2+的抑制作用具有竞争性,这与环化的双金属离子机制一致。