Palczewski K, Buczylko J, Ohguro H, Annan R S, Carr S A, Crabb J W, Kaplan M W, Johnson R S, Walsh K A
Department of Ophthalmology, University of Washington, Seattle 98195.
Protein Sci. 1994 Feb;3(2):314-24. doi: 10.1002/pro.5560030215.
The inactivation of photolyzed rhodopsin requires phosphorylation of the receptor and binding of a 48-kDa regulatory protein, arrestin. By binding to phosphorylated photolyzed rhodopsin, arrestin inhibits G protein (Gt) activation and blocks premature dephosphorylation, thereby preventing the reentry of photolyzed rhodopsin into the phototransduction pathway. In this study, we isolated a 44-kDa form of arrestin, called p44, from fresh bovine rod outer segments and characterized its structure and function. A partial primary structure of p44 was established by a combination of mass spectrometry and automated Edman degradation of proteolytic peptides. The amino acid sequence was found to be identical with arrestin, except that the C-terminal 35 residues (positions 370-404) are replaced by a single alanine. p44 appeared to be generated by alternative mRNA splicing, because intron 15 interrupts within the nucleotide codon for 369Ser in the arrestin gene. Functionally, p44 binds avidly to photolyzed or phosphorylated and photolyzed rhodopsin. As a consequence of its relatively high affinity for bleached rhodopsin, p44 blocks Gt activation. The binding characteristics of p44 set it apart from tryptic forms of arrestin (truncated at the N- and C-termini), which require phosphorylation of rhodopsin for tight binding. We propose that p44 is a novel splice variant of arrestin that could be involved in the regulation of Gt activation.
光分解视紫红质的失活需要受体的磷酸化以及一种48 kDa调节蛋白——抑制蛋白的结合。通过与磷酸化的光分解视紫红质结合,抑制蛋白抑制G蛋白(Gt)的激活并阻止过早的去磷酸化,从而防止光分解视紫红质重新进入光转导途径。在本研究中,我们从新鲜牛视杆外段中分离出一种44 kDa的抑制蛋白形式,称为p44,并对其结构和功能进行了表征。通过质谱分析和对蛋白水解肽段的自动埃德曼降解相结合的方法确定了p44的部分一级结构。发现其氨基酸序列与抑制蛋白相同,只是C末端的35个残基(第370 - 404位)被单个丙氨酸取代。p44似乎是由选择性mRNA剪接产生的,因为内含子15在抑制蛋白基因中369Ser的核苷酸密码子内中断。在功能上,p44能 avidly 结合光分解的或磷酸化且光分解的视紫红质。由于其对漂白视紫红质具有相对较高的亲和力,p44会阻断Gt的激活。p44的结合特性使其与胰蛋白酶消化形式的抑制蛋白(在N末端和C末端被截断)不同,后者需要视紫红质磷酸化才能紧密结合。我们提出p44是抑制蛋白的一种新型剪接变体,可能参与Gt激活的调节。 (注:avidly这个词在原文语境中可能有误,推测应该是avidly,意为“热切地、贪婪地”,这里翻译为“avidly”是按照推测意思来翻译,不确定是否符合原文准确意图。)