Department of Biology, Science and Research Branch, Islamic Azad University, Tehran, Iran.
Bioengineered. 2012 Nov-Dec;3(6):326-8. doi: 10.4161/bioe.21445. Epub 2012 Aug 16.
Bacteriorhodopsin (BR), a model system in biotechnology, is a G-protein dependent trans membrane protein which serves as a light driven proton pump in the cell membrane of Halobacterium salinarum. Due to the linkage of retinal to the protein, it seems colored and has numbers of versatile properties. As in vitro culture of the Halobacteria is very difficult, and isolation is time consuming and usually inefficient, production of genetically modified constructs of the protein is essential. There are three important characteristics based on protein catalytic cycle and molecular functions of photo-electric, photochromic and proton transporting, which makes this protein as a strategic molecule with potential applications in biotechnology. Such applications include protein films, used in artificial retinal implants, light modulators, three-dimensional optical memories, color photochromic sensors, photochromic and electrochromic papers and ink, biological camouflage and photo detectors for biodefense and non-defense purposes.
紫膜菌视紫红质(BR),生物技术的模式系统,是一种 G 蛋白偶联跨膜蛋白,在盐生盐杆菌的细胞膜中作为光驱动质子泵。由于视黄醛与蛋白质的连接,它看起来是有色的,具有多种多功能特性。由于盐杆菌的体外培养非常困难,而且分离耗时且通常效率低下,因此必须生产该蛋白质的基因修饰构建体。该蛋白质基于蛋白催化循环和光电、光致变色和质子转运的分子功能具有三个重要特征,使其成为具有生物技术潜在应用的战略分子。这些应用包括用于人工视网膜植入物的蛋白质膜、光调制器、三维光学存储器、彩色光致变色传感器、光致变色和电致变色纸和墨水、生物伪装和用于生物防御和非防御目的的光探测器。