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膜蛋白细菌视紫红质折叠和组装过程中的视网膜结合

Retinal binding during folding and assembly of the membrane protein bacteriorhodopsin.

作者信息

Booth P J, Farooq A, Flitsch S L

机构信息

Department of Biochemistry, University of Oxford, UK.

出版信息

Biochemistry. 1996 May 7;35(18):5902-9. doi: 10.1021/bi960129e.

Abstract

The factors driving folding and assembly of integral membrane proteins are largely unknown. In order to determine the role that the retinal chromophore plays in assembly of bacteriorhodopsin, we have determined the kinetics and thermodynamics of retinal binding during regeneration of bacteriorhodopsin, from denatured apoprotein, in vitro. Regeneration is initiated by rapid, stopped-flow, mixing of the denatured apoprotein bacterioopsin in sodium dodecyl sulfate micelles with mixed detergent/lipid micelles containing retinal. Regeneration kinetics are measured by time-resolving changes in protein fluorescence. The dependence of each kinetic component on retinal concentration is determined. Only one experimentally observed rate constant is dependent on retinal concentration, leading to identification of only one second-order reaction involving retinal and bacterioopsin. This reaction occurs after a rate-limiting step in bacterioopsin folding, and results in formation of a noncovalent retinal/protein complex. The free energy change of this retinal binding step is determined, showing that thermodynamic information can be obtained on transient intermediates involved in membrane protein regeneration.

摘要

驱动整合膜蛋白折叠和组装的因素在很大程度上尚不清楚。为了确定视黄醛发色团在细菌视紫红质组装中所起的作用,我们已经测定了在体外从变性脱辅基蛋白再生细菌视紫红质过程中视黄醛结合的动力学和热力学。再生通过在十二烷基硫酸钠胶束中的变性脱辅基蛋白细菌视紫红质与含有视黄醛的混合去污剂/脂质胶束进行快速、停流混合来启动。通过时间分辨蛋白质荧光变化来测量再生动力学。确定每个动力学成分对视黄醛浓度的依赖性。仅一个实验观察到的速率常数依赖于视黄醛浓度,这导致仅鉴定出一个涉及视黄醛和细菌视紫红质的二级反应。该反应发生在细菌视紫红质折叠的限速步骤之后,并导致形成非共价视黄醛/蛋白质复合物。确定了该视黄醛结合步骤的自由能变化,表明可以获得关于参与膜蛋白再生的瞬时中间体热力学信息。

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