首页> 美国卫生研究院文献>Biophysical Journal >Nanosecond retinal structure changes in K-590 during the room-temperature bacteriorhodopsin photocycle: picosecond time-resolved coherent anti-stokes Raman spectroscopy.
【2h】

Nanosecond retinal structure changes in K-590 during the room-temperature bacteriorhodopsin photocycle: picosecond time-resolved coherent anti-stokes Raman spectroscopy.

机译:在室温细菌视紫红质光周期中K-590中的纳秒级视网膜结构发生了变化:皮秒级时间分辨相干抗斯托克斯拉曼光谱。

代理获取
本网站仅为用户提供外文OA文献查询和代理获取服务,本网站没有原文。下单后我们将采用程序或人工为您竭诚获取高质量的原文,但由于OA文献来源多样且变更频繁,仍可能出现获取不到、文献不完整或与标题不符等情况,如果获取不到我们将提供退款服务。请知悉。

摘要

Time-resolved vibrational spectra are used to elucidate the structural changes in the retinal chromophore within the K-590 intermediate that precedes the formation of the L-550 intermediate in the room-temperature (RT) bacteriorhodopsin (BR) photocycle. Measured by picosecond time-resolved coherent anti-Stokes Raman scattering (PTR/CARS), these vibrational data are recorded within the 750 cm-1 to 1720 cm-1 spectral region and with time delays of 50-260 ns after the RT/BR photocycle is optically initiated by pulsed (< 3 ps, 1.75 nJ) excitation. Although K-590 remains structurally unchanged throughout the 50-ps to 1-ns time interval, distinct structural changes do appear over the 1-ns to 260-ns period. Specifically, comparisons of the 50-ps PTR/CARS spectra with those recorded with time delays of 1 ns to 260 ns reveal 1) three types of changes in the hydrogen-out-of-plane (HOOP) region: the appearance of a strong, new feature at 984 cm-1; intensity decreases for the bands at 957 cm-1, 952 cm-1, and 939 cm-1; and small changes intensity and/or frequency of bands at 855 cm-1 and 805 cm-1; and 2) two types of changes in the C-C stretching region: the intensity increase in the band at 1196 cm-1 and small intensity changes and/or frequency shifts for bands at 1300 cm-1 and 1362 cm-1. No changes are observed in the C = C stretching region, and no bands assignable to the Schiff base stretching mode (C = NH+) mode are found in any of the PTR/CARS spectra assignable to K-590. These PTR/CARS data are used, together with vibrational mode assignments derived from previous work, to characterize the retinal structural changes in K-590 as it evolves from its 3.5-ps formation (ps/K-590) through the nanosecond time regime (ns/K-590) that precedes the formation of L-550. The PTR/CARS data suggest that changes in the torsional modes near the C14-C15 = N bonds are directly associated with the appearance of ns/K-590, and perhaps with the KL intermediate proposed in earlier studies. These vibrational data can be primarily interpreted in terms of the degree of twisting of the C14-C15 retinal bond. Such twisting may be accompanied by changes in the adjacent protein. Other smaller, but nonetheless clear, spectral changes indicate that alterations along the retinal polyene chain also occur. The changes in the retinal structure are preliminary to the deprotonation of the Schiff base nitrogen during the formation of M-412. The time constant for the pss K-590 transformation is estimated from the amplitude change of four vibrational bands in the HOOP region to be 40-70 ns.
机译:时间分辨的振动光谱用于阐明在室温(RT)细菌视紫红质(BR)光循环中形成L-550中间体之前,K-590中间体内视网膜发色团的结构变化。通过皮秒时间分辨的相干反斯托克斯拉曼散射(PTR / CARS)进行测量,这些振动数据记录在750 cm-1至1720 cm-1的光谱范围内,并且在RT / BR之后的时间延迟为50-260 ns脉冲(<3 ps,1.75 nJ)激发光引发了光周期。尽管K-590在50 ps至1 ns的时间间隔内在结构上保持不变,但在1 ns至260 ns的时间内确实出现了明显的结构变化。具体而言,将50 ps PTR / CARS谱图与记录的1 ns至260 ns时延的谱图进行比较,发现1)平面外氢(HOOP)区域的三种类型的变化: ,984 cm-1处的新功能;在957 cm-1、952 cm-1和939 cm-1处的波段强度降低; 855 cm-1和805 cm-1处的波段强度和/或频率有微小变化; 2)C-C拉伸区域的两种类型的变化:1196 cm-1处谱带的强度增加和1300 cm-1和1362 cm-1谱带的强度变化和/或频移较小。在C = C拉伸区域中未观察到变化,在可分配给K-590的任何PTR / CARS光谱中均未发现可分配给席夫碱拉伸模式(C = NH +)模式的谱带。这些PTR / CARS数据与先前工作中得出的振动模式分配一起用于表征K-590的视网膜结构变化,因为它从3.5 ps形成(ps / K-590)发展到纳秒级时间范围( ns / K-590)之前形成的L-550。 PTR / CARS数据表明,C14-C15 = N键附近的扭转模式的变化与ns / K-590的出现直接相关,也许与早期研究中提出的KL中间体有关。这些振动数据可以主要根据C14-C15视网膜键的扭曲程度来解释。这种扭曲可能伴随着相邻蛋白质的变化。其他较小但清晰的光谱变化表明,沿视网膜多烯链的变化也发生了。视网膜结构的变化是在M-412形成过程中席夫碱氮去质子化的基础。 ps / ns K-590变换的时间常数是根据HOOP区域中四个振动带的幅度变化估计为40-70 ns。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
代理获取

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号