Garcia-Quintana D, Francesch A, Garriga P, de Lera A R, Padrós E, Manyosa J
Departament de Bioquímica i de Biologia Molecular, Facultat de Medicina, Universitat Autonòma de Barcelona, Catalonia, Spain.
Biophys J. 1995 Sep;69(3):1077-82. doi: 10.1016/S0006-3495(95)79981-7.
The study of the structural differences between rhodopsin and its active form (metarhodopsin II) has been carried out by means of deconvolution analysis of infrared spectra. Deconvolution techniques allow the direct identification of the spectral changes that have occurred, which results in a significantly different view of the conformational changes occurring after activation of the receptor as compared with previous difference spectroscopy analysis. Thus, a number of changes in the bands assigned to solvent-exposed domains of the receptor are detected, indicating significant decreases in extended (beta) sequences and in reverse turns, and increases in irregular/aperiodic sequences and in helices with a non-alpha geometry, whereas there is no decrease in alpha-helices. In addition to secondary structure conversions, qualitative alterations within a given secondary structure type are detected. These are seen to occur in both reverse turns and helices. The nature of this spectral change is of great importance, since a clear alteration in the helices bundle core is detected. All these changes indicate that the rhodopsin --> metarhodopsin II transition involves not a minor but a major conformational rearrangement, reconciling the infrared data with the energetics of the activation process.
通过对红外光谱进行去卷积分析,对视紫红质及其活性形式(变视紫红质II)之间的结构差异进行了研究。去卷积技术能够直接识别所发生的光谱变化,与之前的差示光谱分析相比,这使得人们对受体激活后发生的构象变化有了显著不同的认识。因此,检测到了一些分配给受体溶剂暴露区域的谱带变化,表明延伸(β)序列和反向转角显著减少,不规则/非周期性序列以及具有非α几何结构的螺旋增加,而α螺旋没有减少。除了二级结构转换外,还检测到了给定二级结构类型内的定性变化。这些变化在反向转角和螺旋中均有出现。这种光谱变化的性质非常重要,因为在螺旋束核心检测到了明显的改变。所有这些变化表明,视紫红质向变视紫红质II的转变涉及的不是微小的而是主要的构象重排,使红外数据与激活过程的能量学相协调。