Cohen G B, Oprian D D, Robinson P R
Graduate Department of Biochemistry, Brandeis University, Waltham, Massachusetts 02254.
Biochemistry. 1992 Dec 22;31(50):12592-601. doi: 10.1021/bi00165a008.
In previous studies, mutation of either Lys296 or Glu113 in bovine rhodopsin has been shown to result in constitutive activation of the apoprotein form, opsin [Robinson et al. (1992) Neuron 9, 719-725]. In this report, pH-rate profiles for the rhodopsin-catalyzed exchange of GTPgS for GDP on transducin are established for the constitutively active opsin mutants. All of the mutants, including the double-mutant E113Q,K296G, show a bell-shaped pH-rate profile. Therefore, it is evident that at least two ionizable groups in addition to Lys296 and Glu113 control the formation of the active opsin state. The sole effect of mutation at position 113 or 296 is to alter the ionization constant of the group with the higher pKa, called pka2. pKa2 decreases in the following order: rhodopsin/light (9.0) > K296E = K296G = E113Q,K296G (8.0) > E113Q (6.8) > K296H (6.6) >> wild-type opsin (< 5.0). These results are consistent with a model where activation of opsin involves (i) breaking of the salt bridge between Lys296 and Glu113, (ii) deprotonation of Lys296, and (iii) the net uptake of a proton from the solvent. Furthermore, exogenous addition of the chromophore all-trans-retinal shifts the wild-type and E113Q opsin equilibrium to favor the active state. In all these respects, the light-independent activation of the opsin mutants appears to proceed by a mechanism similar to that of light-activated rhodopsin.
在先前的研究中,已表明牛视紫红质中赖氨酸296(Lys296)或谷氨酸113(Glu113)发生突变会导致脱辅基蛋白形式的视蛋白组成型激活[罗宾逊等人(1992年),《神经元》9卷,719 - 725页]。在本报告中,针对组成型激活的视蛋白突变体,建立了视紫红质催化转导蛋白上的GTPγS与GDP交换的pH速率曲线。所有突变体,包括双突变体E113Q、K296G,均呈现钟形pH速率曲线。因此,很明显,除了Lys296和Glu113之外,至少还有两个可电离基团控制着活性视蛋白状态的形成。113位或296位突变的唯一作用是改变具有较高pKa的基团的电离常数,称为pKa2。pKa2按以下顺序降低:视紫红质/光(9.0)> K296E = K296G = E113Q、K296G(八、0)> E113Q(6.8)> K296H(6.6)>>野生型视蛋白(< 5.0)。这些结果与一个模型一致,在该模型中视蛋白的激活涉及:(i)Lys296和Glu113之间盐桥的断裂;(ii)Lys296的去质子化;(iii)从溶剂中净吸收一个质子。此外,外源添加发色团全反式视黄醛会使野生型和E113Q视蛋白的平衡向有利于活性状态的方向移动。在所有这些方面,视蛋白突变体的光非依赖性激活似乎通过与光激活视紫红质类似的机制进行。