Altenbach C, Cai K, Khorana H G, Hubbell W L
Jules Stein Eye Institute, Department of Chemistry and Biochemistry, University of California, Los Angeles 90095-7008, USA.
Biochemistry. 1999 Jun 22;38(25):7931-7. doi: 10.1021/bi9900121.
Sixteen single-cysteine substitution mutants of rhodopsin were prepared in the sequence 306-321 which begins in transmembrane helix VII and ends at the palmitoylation sites at 322C and 323C. The substituted cysteine residues were modified with a selective reagent to generate a nitroxide side chain, and the electron paramagnetic resonance spectrum of each spin-labeled mutant was analyzed in terms of residue accessibility and mobility. The periodic behavior of these parameters along the sequence indicated that residues 306-314 were in a regular alpha-helical conformation representing the end of helix VII. This helix apparently extends about 1.5 turns above the surface of the membrane, with one face in strong tertiary interaction with the core of the protein. For the segment 315-321, substituted cysteine residues at 317, 318, 320, and 321 had low reactivity with the spin-label reagent. This segment has the most extensive tertiary interactions yet observed in the rhodopsin extra-membrane sequences at the cytoplasmic surface. Previous studies showed the spontaneous formation of a disulfide bond between cysteine residues at 65 and 316. This result indicates that at least some of the tertiary contacts made in the 315-321 segment are with the sequence connecting transmembrane helices I and II. Photoactivation of rhodopsin produces changes in structure detected by spin labels at 306, 313, and 316. The changes at 313 can be accounted for by movements in the adjacent helix VI.
制备了视紫红质的16个单半胱氨酸替代突变体,其序列位于306 - 321位,该序列起始于跨膜螺旋VII,终止于322C和323C处的棕榈酰化位点。用一种选择性试剂修饰替代的半胱氨酸残基以产生氮氧化物侧链,并根据残基可及性和流动性分析每个自旋标记突变体的电子顺磁共振谱。这些参数沿序列的周期性行为表明,306 - 314位残基处于规则的α-螺旋构象,代表螺旋VII的末端。该螺旋显然在膜表面上方延伸约1.5圈,其中一面与蛋白质核心有强烈的三级相互作用。对于315 - 321片段,317、318、320和321位的替代半胱氨酸残基与自旋标记试剂的反应性较低。该片段在视紫红质细胞质表面的膜外序列中具有迄今为止观察到的最广泛的三级相互作用。先前的研究表明,65位和316位的半胱氨酸残基之间会自发形成二硫键。这一结果表明,315 - 321片段中形成的至少一些三级接触是与连接跨膜螺旋I和II的序列发生的。视紫红质的光激活会导致306、313和316位自旋标记检测到的结构变化。313位的变化可以由相邻螺旋VI的移动来解释。