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混合磷脂/去污剂胶束中单体细菌视紫红质的结构与热稳定性

Structure and thermal stability of monomeric bacteriorhodopsin in mixed phospholipid/detergent micelles.

作者信息

Brouillette C G, McMichens R B, Stern L J, Khorana H G

机构信息

Department of Medicine, University of Alabama, Birmingham 35294.

出版信息

Proteins. 1989;5(1):38-46. doi: 10.1002/prot.340050106.

Abstract

Thermal unfolding experiments on bacteriorhodopsin in mixed phospholipid/detergent micelles were performed. Bacteriorhodopsin was extracted from the purple membrane in a denatured state and then renatured in the micellar system. The purpose of this study was to compare the changes, if any, in the structure and stability of a membrane protein that has folded in a nonnative environment with results obtained on the native system, i.e., the purple membrane. The purple membrane crystalline lattice is an added factor that may influence the structural stability of bacteriorhodopsin. Micelles containing bacteriorhodopsin are uniformly sized disks 105 +/- 13 A in diameter (by electron microscopy) and have an estimated molecular mass of 210 kDa (by gel filtration HPLC). The near-UV CD spectra (which is indicative of tertiary structure) for micellar bacteriorhodopsin and the purple membrane are very similar. In the visible CD region of retinal absorption, the double band seen in the spectrum of the purple membrane is replaced with a broad positive band for micellar bacteriorhodopsin, indicating that in micelles, bacteriorhodopsin is monomeric. The plot of denaturational temperature vs. pH for micellar bacteriorhodopsin is displaced downward on the temperature axis, illustrating the lower thermal stability of micellar bacteriorhodopsin when compared to the purple membrane at the same pH. Even though micellar bacteriorhodopsin is less stable, similar changes in response to pH and temperature are seen in the visible absorption spectra of micellar bacteriorhodopsin and the purple membrane. This demonstrates that changes in the protonation state or temperature have a similar affect on the local environment of the chromophore and the protein conformation.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

对混合磷脂/去污剂胶束中的细菌视紫红质进行了热变性实验。细菌视紫红质从处于变性状态的紫膜中提取出来,然后在胶束系统中复性。本研究的目的是比较在非天然环境中折叠的膜蛋白的结构和稳定性的变化(如果有)与在天然系统即紫膜上获得的结果。紫膜晶格是可能影响细菌视紫红质结构稳定性的一个附加因素。含有细菌视紫红质的胶束是直径为105±13埃的均匀大小的圆盘(通过电子显微镜观察),估计分子量为210 kDa(通过凝胶过滤高效液相色谱法)。胶束细菌视紫红质和紫膜的近紫外圆二色光谱(指示三级结构)非常相似。在视网膜吸收的可见圆二色区域,紫膜光谱中看到的双峰被胶束细菌视紫红质的一个宽正峰取代,表明在胶束中,细菌视紫红质是单体的。胶束细菌视紫红质的变性温度与pH值的关系图在温度轴上向下移动,说明在相同pH值下,胶束细菌视紫红质的热稳定性低于紫膜。尽管胶束细菌视紫红质稳定性较差,但在胶束细菌视紫红质和紫膜的可见吸收光谱中可以看到对pH值和温度的类似变化。这表明质子化状态或温度的变化对发色团的局部环境和蛋白质构象有类似的影响。(摘要截短为250字)

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