Langlois G, Chen C K, Palczewski K, Hurley J B, Vuong T M
Institut de Pharmacologie Moléculaire et Cellulaire, Centre National de la Recherche Scientifique, Valbonne, France.
Proc Natl Acad Sci U S A. 1996 May 14;93(10):4677-82. doi: 10.1073/pnas.93.10.4677.
The biochemistry of visual excitation is kinetically explored by measuring the activity of the cGMP phosphodiesterase (PDE) at light levels that activate only a few tens of rhodopsin molecules per rod. At 23 degrees C and in the presence of ATP, the pulse of PDE activity lasts 4 s (full width at half maximum). Complementing the rod outer segments (ROS) with rhodopsin kinase (RK) and arrestin or its splice variant p44 does not significantly shorten the pulse. But when the ROS are washed, the duration of the signal doubles. Adding either arrestin or p44 back to washed ROS approximately restores the pulse width to its initial value, with p44 being 10 times more efficient than arrestin. This supports the idea that, in vivo, capping of phosphorylated R* is mostly done by p44. When myristoylated (14:0) recoverin is added to unwashed ROS, the pulse duration and amplitude increase by about 50% if the free calcium is 500 nM. This effect increases further if the calcium is raised to 1 microM. Whenever R* deactivation is changed--when RK is exogenously enriched or when ATP is omitted from the buffer--there is no impact on the rising slope of the PDE pulse but only on its amplitude and duration. We explain this effect as due to the unequal competition between transducin and RK for R*. The kinetic model issued from this idea fits the data well, and its prediction that enrichment with transducin should lengthen the PDE pulse is successfully validated.
通过在仅激活每个视杆细胞中几十个个视紫红质分子的光照水平下测量cGMP磷酸二酯酶(PDE)的活性,对视觉兴奋的生物化学进行了动力学研究。在23摄氏度且存在ATP的情况下,PDE活性脉冲持续4秒(半高宽)。用视紫红质激酶(RK)和抑制蛋白或其剪接变体p44补充视杆细胞外段(ROS)并不会显著缩短脉冲。但是当ROS被洗涤后,信号持续时间会加倍。将抑制蛋白或p44重新添加到洗涤后的ROS中,大约可将脉冲宽度恢复到其初始值,其中p44的效率比抑制蛋白高10倍。这支持了在体内,磷酸化的R的封端主要由p44完成的观点。当将肉豆蔻酰化(14:0)的恢复蛋白添加到未洗涤的ROS中时,如果游离钙为500 nM,脉冲持续时间和幅度会增加约50%。如果将钙浓度提高到1 microM,这种效应会进一步增强。每当R失活发生变化时——当外源富集RK或从缓冲液中省略ATP时——对PDE脉冲的上升斜率没有影响,只会影响其幅度和持续时间。我们将这种效应解释为由于转导素和RK对R*的竞争不平等所致。基于这一观点建立的动力学模型与数据拟合良好,并且其预测的转导素富集应延长PDE脉冲的结果得到了成功验证。