Peshenko Igor V, Dizhoor Alexander M
Hafter Research Laboratories, Pennsylvania College of Optometry, Elkins Park, Pennsylvania 19027, USA.
J Biol Chem. 2006 Aug 18;281(33):23830-41. doi: 10.1074/jbc.M600257200. Epub 2006 Jun 22.
Guanylyl cyclase-activating protein 1 (GCAP-1) is an EF-hand protein that activates retinal guanylyl cyclase (RetGC) in photoreceptors at low free Ca2+ in the light and inhibits it in the dark when Ca2+ concentrations rise. We present the first direct evidence that Mg2+-bound form of GCAP-1, not its cation-free form, is the true activator of RetGC-1 under physiological conditions. Of four EF-hand structures in GCAP-1, three bound Ca2+ ions and could exchange Ca2+ for Mg2+. At concentrations of free Ca2+ and Mg2+ typical for the light-adapted photoreceptors, all three metal-binding EF-hands were predominantly occupied by Mg2, and the presence of bound Mg2+ in GCAP-1 was essential for its ability to stimulate RetGC-1. In the Mg2+-bound form of GCAP-1 all three Trp residues became more exposed to the polar environment compared with its apo form. The replacement of Mg2+ by Ca2+ in the EF-hands 2 and 3 further exposed Trp-21 to the solution in a non-metal-binding EF-hand domain 1 that interacts with RetGC. Contrary to that, replacement of Mg2+ by Ca2+ in the EF-hand 4 moved Trp-94 in the entering alpha-helix of the EF-hand 3 back to the non-polar environment. Our results demonstrate that Mg2+ regulates GCAP-1 not only by adjusting its Ca2+ sensitivity to the physiological conditions in photoreceptors but also by creating the conformation required for RetGC stimulation.
鸟苷酸环化酶激活蛋白1(GCAP-1)是一种EF手型蛋白,在光照下低游离Ca2+浓度时激活光感受器中的视网膜鸟苷酸环化酶(RetGC),而在黑暗中Ca2+浓度升高时抑制该酶。我们首次提供直接证据表明,在生理条件下,与镁结合的GCAP-1形式而非其无阳离子形式是RetGC-1的真正激活剂。在GCAP-1的四个EF手型结构中,三个结合了Ca2+离子,并且可以将Ca2+与Mg2+进行交换。在适应光的光感受器典型的游离Ca2+和Mg2+浓度下,所有三个金属结合EF手型主要被Mg2+占据,并且GCAP-1中结合的Mg2+的存在对其刺激RetGC-1的能力至关重要。与无辅基形式相比,在与镁结合的GCAP-1形式中,所有三个色氨酸残基在极性环境中变得更加暴露。在与RetGC相互作用的非金属结合EF手型结构域1中,EF手型2和3中的Mg2+被Ca2+取代进一步使色氨酸-21暴露于溶液中。与此相反,EF手型4中的Mg2+被Ca2+取代使EF手型3进入的α螺旋中的色氨酸-94回到非极性环境。我们的结果表明,Mg2+不仅通过调节其对光感受器生理条件的Ca2+敏感性来调节GCAP-1,还通过产生刺激RetGC所需的构象来调节。