Verhoefen Mirka-Kristin, Schäfer Gabriela, Shastri Sarika, Weber Ingrid, Glaubitz Clemens, Mäntele Werner, Wachtveitl Josef
Institute of Physical and Theoretical Chemistry, Johann Wolfgang Goethe-University Frankfurt, Max-von-Laue Straße 7, 60438 Frankfurt am Main, Germany.
Biochim Biophys Acta. 2011 Dec;1807(12):1583-90. doi: 10.1016/j.bbabio.2011.09.001. Epub 2011 Sep 11.
In the presented study the low pH photocycle of proteorhodopsin is extensively investigated by means of low temperature FTIR spectroscopy. Besides the already well-known characteristics of the all-trans and 13-cis retinal vibrations the 77K difference spectrum at pH 5.1 shows an additional negative signal at 1744 cm(-1) which is interpreted as indicator for the L state. The subsequent photocycle steps are investigated at temperatures higher than 200K. The combination of visible and FTIR spectroscopy enabled us to observe that the deprotonation of the Schiff base is linked to the protonation of an Asp or Glu side chain - the new proton acceptor under acidic conditions. The difference spectra of the late intermediates are characterized by large amide I changes and two further bands ((-)1751 cm(-1)/(+)1725 cm(-1)) in the spectral region of the Asp/Glu ν(C=O) vibrations. The band position of the negative signature points to a transient deprotonation of Asp-97. In addition, the pH dependence of the acidic photocycle was investigated. The difference spectra at pH 5.5 show distinct differences connected to changes in the protonation state of key residues. Based on our data we propose a three-state model that explains the complex pH dependence of PR.
在本研究中,通过低温傅里叶变换红外光谱法对视紫质的低pH光循环进行了广泛研究。除了全反式和13-顺式视黄醛振动的已知特征外,pH 5.1时的77K差谱在1744 cm⁻¹处显示出一个额外的负信号,该信号被解释为L态的指示。随后在高于200K的温度下研究了光循环步骤。可见光谱和傅里叶变换红外光谱的结合使我们能够观察到席夫碱的去质子化与天冬氨酸或谷氨酸侧链的质子化相关——酸性条件下的新质子受体。晚期中间体的差谱特征是酰胺I有较大变化,并且在天冬氨酸/谷氨酸ν(C=O)振动的光谱区域有另外两个谱带(-1751 cm⁻¹/+1725 cm⁻¹)。负信号的谱带位置表明天冬氨酸-97发生了瞬时去质子化。此外,还研究了酸性光循环的pH依赖性。pH 5.5时的差谱显示出与关键残基质子化状态变化相关的明显差异。基于我们的数据,我们提出了一个三态模型来解释视紫质复杂的pH依赖性。