Downer N W, Bruchman T J, Hazzard J H
J Biol Chem. 1986 Mar 15;261(8):3640-7.
Infrared spectroscopy in the interval from 1800 to 1300 cm-1 has been used to investigate the secondary structure and the hydrogen/deuterium exchange behavior of bacteriorhodopsin and bovine rhodopsin in their respective native membranes. The amide I' and amide II' regions from spectra of membrane suspensions in D2O were decomposed into constituent bands by use of a curve-fitting procedure. The amide I' bands could be fit with a minimum of three theoretical components having peak positions at 1664, 1638, and 1625 cm-1 for bacteriorhodopsin and 1657, 1639, and 1625 cm-1 for rhodopsin. For both of these membrane proteins, the amide I' spectrum suggests that alpha-helix is the predominant form of peptide chain secondary structure, but that a substantial amount of beta-sheet conformation is present as well. The shape of the amide I' band was pH-sensitive for photoreceptor membranes, but not for purple membrane, indicating that membrane-bound rhodopsin undergoes a conformation change at acidic pH. Peptide hydrogen exchange of bacteriorhodopsin and rhodopsin was monitored by observing the change in the ratio of integrated absorbance (Aamide II'/Aamide I') during the interval from 1.5 to 25 h after membranes were introduced into buffered D2O. The fraction of peptide groups in a very slowly exchanging secondary structure was estimated to be 0.71 for bacteriorhodopsin at pD 7. The corresponding fraction in vertebrate rhodopsin was estimated to be less than or equal to 0.60. These findings are discussed in relationship to previous studies of hydrogen exchange behavior and to structural models for both proteins.
利用1800至1300 cm-1区间的红外光谱,研究了细菌视紫红质和牛视紫红质在各自天然膜中的二级结构以及氢/氘交换行为。通过曲线拟合程序,将D2O中膜悬浮液光谱的酰胺I'和酰胺II'区域分解为组成谱带。对于细菌视紫红质,酰胺I'谱带至少可用三个理论成分拟合,其峰值位置分别为1664、1638和1625 cm-1;对于视紫红质,峰值位置分别为1657、1639和1625 cm-1。对于这两种膜蛋白,酰胺I'光谱表明α-螺旋是肽链二级结构的主要形式,但也存在大量的β-折叠构象。对于光感受器膜,酰胺I'谱带的形状对pH敏感,而对紫膜不敏感,这表明膜结合的视紫红质在酸性pH下会发生构象变化。在将膜引入缓冲的D2O中1.5至25小时的时间间隔内,通过观察积分吸光度比值(A酰胺II'/A酰胺I')的变化,监测细菌视紫红质和视紫红质的肽氢交换。在pD 7时,细菌视紫红质中处于非常缓慢交换二级结构的肽基团比例估计为0.71。脊椎动物视紫红质中的相应比例估计小于或等于0.60。结合先前关于氢交换行为的研究以及这两种蛋白质的结构模型,对这些发现进行了讨论。