Perálvarez-Marín Alex, Lórenz-Fonfría Víctor A, Bourdelande José-Luís, Querol Enric, Kandori Hideki, Padrós Esteve
Unitat de Biofísica, Departament de Bioquímica i de Biologia Molecular, Facultat de Medicina, and Centre d'Estudis en Biofísica, Universitat Autònoma de Barcelona, Bellaterra (Cerdanyola del Vallès), Barcelona 08193, Spain.
J Mol Biol. 2007 May 4;368(3):666-76. doi: 10.1016/j.jmb.2007.02.021. Epub 2007 Feb 20.
The behavior of the D115A mutant was analyzed by time-resolved UV-Vis and Fourier transformed infrared (FTIR) spectroscopies, aiming to clarify the role of Asp115 in the intra-protein signal transductions occurring during the bacteriorhodopsin photocycle. UV-Vis data on the D115A mutant show severely desynchronized photocycle kinetics. FTIR data show a poor transmission of the retinal isomerization to the chromoprotein, evidenced by strongly attenuated helical changes (amide I), the remarkable absence of environment alterations and protonation/deprotonation events related to Asp96 and direct Schiff base (SB) protonation form the bulk. This argues for the interactions of Asp115 with Leu87 (via water molecule) and Thr90 as key elements for the effective and vectorial proton path between Asp96 and the SB, in the cytoplasmic half of bacteriorhodopsin. The results strongly suggest the presence of a regulation motif enclosed in helices C and D (Thr90-Pro91/Asp115) which drives properly the dynamics of helix C through a set of interactions. It also supports the idea that intra-helical hydrogen bonding clusters in the buried regions of transmembrane proteins can be potential elements in intra-protein signal transduction.
通过时间分辨紫外可见光谱和傅里叶变换红外(FTIR)光谱分析了D115A突变体的行为,旨在阐明天冬氨酸115在细菌视紫红质光循环过程中发生的蛋白质内信号转导中的作用。D115A突变体的紫外可见光谱数据显示光循环动力学严重失步。FTIR数据显示视网膜异构化向视蛋白的传递不佳,这表现为螺旋变化(酰胺I)强烈衰减、与天冬氨酸96相关的环境改变以及质子化/去质子化事件显著缺失,且直接席夫碱(SB)质子化在整体上也不存在。这表明天冬氨酸115与亮氨酸87(通过水分子)和苏氨酸90的相互作用是细菌视紫红质细胞质侧中天冬氨酸96和席夫碱之间有效且有向量质子路径的关键因素。结果强烈表明存在一个包含在螺旋C和D(苏氨酸90 - 脯氨酸91/天冬氨酸115)中的调节基序,它通过一系列相互作用恰当地驱动螺旋C的动力学。这也支持了跨膜蛋白埋藏区域内的螺旋内氢键簇可能是蛋白质内信号转导潜在元件的观点。