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Volume and enthalpy changes after photoexcitation of bovine rhodopsin: laser-induced optoacoustic studies.

机译:牛视紫红质光激发后的体积和焓变:激光诱导的光声研究。

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摘要

Laser-induced optoacoustic measurements were performed with bovine rhodopsin in the temperature range 5-32 degrees C in its natural environment (i.e., in washed membranes) as well as solubilized in dodecyl-beta-D-maltoside. A signal deconvolution procedure using a simple sequential kinetic scheme for the photobaric time evolution revealed, in the case of the washed membranes, the presence of an intermediate with a 14-ns lifetime at 25 degrees C, of the same order as that reported for the BSI intermediate in solubilized rhodopsin (Hug, S. J., W. J. Lewis, C. M. Einterz, T. E. Thorgeirsson, and D. S. Kliger. 1990. Nanosecond photolysis of rhodopsin: evidence for a new, blue-shifted intermediate. Biochemistry. 29:1475-1485), with an energy content of (85 +/- 20) kJ/mol, and accompanied by an expansion of 26 +/- 3 ml/mol. The difference in energy content between BSI and the next transient lumi was estimated in only -1 +/- 5 kJ/mol, concomitant with an expansion of 9 +/- 3 ml/mol. Thus, this transition, which according to literature involves an equilibrium, should be controlled by an entropic change, rather than by an enthalpic difference. This is supported by the fact that both activation parameters for the decay of batho and BSI decrease upon solubilization. For detergent-solubilized rhodopsin, two time constants were enough to fit the sample signal. A short lifetime ascribable to BSI was not detected in this case. For the first intermediate (probably batho in equilibrium with BSI), an energy content of 50 +/- 20 kJ/mol and an expansion of 20 +/- 1 ml/mol, and for lumi an energy content of 11 +/- 20 kJ/mol and a further expansion of 11 +/- 2 ml/mol were determined. Thus, the intermediates of the membrane-embedded form of rhodopsin (in contrast to solubilized samples) are kept in a higher energy level, although the total expansion from rhodopsin to lumi is similar for both conditions (35 +/- 6 and 31 +/- 3 ml/mol). The expansions are interpreted as protein reorganization processes as a consequence of the photoisomerization of the chromophore. As a result, weak interactions are probably perturbed and the protein gains conformational flexibility.
机译:用牛视紫红质在其自然环境中(即在洗涤过的膜中)在5-32℃的温度范围内进行了激光诱导的光声测量,并溶解在十二烷基-β-D-麦芽糖苷中。使用简单的顺序动力学方案进行光压时间演化的信号解卷积程序显示,在洗涤膜的情况下,存在一种中间体,该中间体在25摄氏度下的寿命为14 ns,与报道的相同。 BSI中间体在溶解的视紫红质中的作用(Hug,SJ,WJ Lewis,CM Einterz,TE Thorgeirsson和DS Kliger。1990。视紫红质的纳秒光解:新的蓝移中间体的证据。生物化学。29:1475-1485),能量含量为(85 +/- 20)kJ / mol,并伴随26 +/- 3 ml / mol的膨胀。估计BSI和下一个瞬态发光体之间的能量含量差异仅为-1 +/- 5 kJ / mol,伴随着9 +/- 3 ml / mol的膨胀。因此,这种过渡(根据文献涉及平衡)应通过熵变而不是焓差来控制。这由以下事实支持:浸出液和BSI的衰减的激活参数都在溶解时降低。对于去污剂溶解的视紫红质,两个时间常数足以适合样品信号。在这种情况下,未发现归因于BSI的寿命短。对于第一中间体(可能与BSI处于平衡状态),能量含量为50 +/- 20 kJ / mol,膨胀量为20 +/- 1 ml / mol,对于发光剂,能量含量为11 +/- 20确定了kJ / mol和11 +/- 2 ml / mol的进一步膨胀。因此,尽管两种情况下从视紫红质到发光的总膨胀相似,但视紫红质的膜包埋形式的中间体(与溶解的样品相反)保持较高的能量水平(35 +/- 6和31 + / -3毫升/摩尔)。所述扩展被解释为发色团的光异构化的结果是蛋白质重组过程。结果,弱的相互作用可能被干扰并且蛋白质获得构象柔性。

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