Gurevich V V, Benovic J L
Department of Pharmacology, Jefferson Cancer Center, Thomas Jefferson University, Philadelphia, Pennsylvania 19107.
J Biol Chem. 1995 Mar 17;270(11):6010-6. doi: 10.1074/jbc.270.11.6010.
Arrestin plays a critical role in quenching phototransduction via its ability to specifically interact with the phosphorylated light-activated form of the visual receptor rhodopsin. In an effort to identify the residues involved in interaction with the phosphorylated C terminus of rhodopsin, we introduced point mutations into a basic region in visual arrestin previously implicated in phosphorylation-recognition (residues 163-189). A total of nine point mutations were made, each substituting a neutral hydrophilic residue for a positively charged Lys, Arg, or His. The functional consequences of these mutations were then analyzed by comparing the binding of full-length and truncated wild-type and mutant arrestin to various functional forms of rhodopsin. These studies demonstrate that Arg-171, Arg-175, and Lys-176 in bovine arrestin play a primary role in phosphate interaction, while Lys-166 and Lys-167 likely play a minor role in phosphate binding. In contrast, Lys-163 and His-179 appear to play a regulatory role, while Arg-182 and Arg-189 are not directly involved in arrestin binding to rhodopsin. Arg-175 also appears to function as a phosphorylation-sensitive trigger since charge neutralization by mutagenesis enables arrestin-R175N to bind to light-activated rhodopsin as well as wild-type arrestin binds to phosphorylated light-activated rhodopsin. The implications of these findings for the sequential multisite binding of arrestin to rhodopsin are discussed.
抑制蛋白通过其与视觉受体视紫红质的磷酸化光激活形式特异性相互作用的能力,在终止光转导过程中发挥关键作用。为了确定与视紫红质磷酸化C末端相互作用的残基,我们在视觉抑制蛋白中一个先前被认为与磷酸化识别有关的碱性区域(残基163 - 189)引入了点突变。总共进行了九个点突变,每个突变都用一个中性亲水残基取代一个带正电荷的赖氨酸、精氨酸或组氨酸。然后通过比较全长和截短的野生型及突变型抑制蛋白与视紫红质各种功能形式的结合,分析这些突变的功能后果。这些研究表明,牛抑制蛋白中的精氨酸-171、精氨酸-175和赖氨酸-176在磷酸盐相互作用中起主要作用,而赖氨酸-166和赖氨酸-167在磷酸盐结合中可能起次要作用。相比之下,赖氨酸-163和组氨酸-179似乎起调节作用,而精氨酸-182和精氨酸-189不直接参与抑制蛋白与视紫红质的结合。精氨酸-175似乎还作为一个磷酸化敏感触发因子发挥作用,因为通过诱变使电荷中和能使抑制蛋白-R175N与光激活的视紫红质结合,就如同野生型抑制蛋白与磷酸化光激活的视紫红质结合一样。本文讨论了这些发现对视紫红质与抑制蛋白顺序多位点结合的意义。