Department of Basic Medical Sciences, University of Bari Aldo Moro, Bari, Italy.
Photochem Photobiol. 2012 May-Jun;88(3):690-700. doi: 10.1111/j.1751-1097.2012.01089.x. Epub 2012 Feb 9.
We have isolated and characterized the light-driven proton pump Bop I from the ultrathin square archaeon Haloquadratum walsbyi, the most abundant component of the dense microbial community inhabiting hypersaline environments. The disruption of cells by hypo-osmotic shock yielded Bop I retinal protein highly enriched membranes, which contain one main 27 kDa protein band together with a high content of the carotenoid bacterioruberin. Light-induced pH changes were observed in suspensions of Bop I retinal protein-enriched membranes under sustained illumination. Solubilization of H. walsbyi cells with Triton X-100, followed by phenyl-Sepharose chromatography, resulted in isolation of two purified Bop I retinal protein bands; mass spectrometry analysis revealed that the Bop I was present as only protein in both the bands. The study of light/dark adaptations, M-decay kinetics, responses to titration with alkali in the dark and endogenous lipid compositions of the two Bop I retinal protein bands showed functional differences that could be attributed to different protein aggregation states. Proton-pumping activity of Bop I during the photocycle was observed in liposomes constituted of archaeal lipids. Similarities and differences of Bop I with other archaeal proton-pumping retinal proteins will be discussed.
我们已经从超嗜盐古菌 Haloquadratum walsbyi 中分离并鉴定了光驱动质子泵 Bop I,Bop I 是栖息在高盐环境中的密集微生物群落中最丰富的成分。通过低渗休克破坏细胞可得到高度富集视黄醛蛋白的 Bop I 膜,其中含有一条主要的 27 kDa 蛋白带,以及高含量的类胡萝卜素菌紫质。在持续光照下,Bop I 视黄醛蛋白富集膜的悬浮液中观察到光诱导的 pH 值变化。用 Triton X-100 溶解 H. walsbyi 细胞,然后用苯基-Sepharose 层析,可分离出两种纯化的 Bop I 视黄醛蛋白带;质谱分析表明,这两种带中均只有 Bop I 蛋白存在。对两种 Bop I 视黄醛蛋白带的光/暗适应、M 衰减动力学、黑暗中用碱滴定的响应以及内源性脂质组成的研究表明,存在功能差异,这可归因于不同的蛋白质聚集状态。在由古菌脂质构成的脂质体中观察到 Bop I 在光循环期间的质子泵活性。将讨论 Bop I 与其他古菌质子泵视黄醛蛋白的相似性和差异。