Shaner Nathan C, Campbell Robert E, Steinbach Paul A, Giepmans Ben N G, Palmer Amy E, Tsien Roger Y
Nat Biotechnol. 2004 Dec;22(12):1567-72. doi: 10.1038/nbt1037. Epub 2004 Nov 21.
Fluorescent proteins are genetically encoded, easily imaged reporters crucial in biology and biotechnology. When a protein is tagged by fusion to a fluorescent protein, interactions between fluorescent proteins can undesirably disturb targeting or function. Unfortunately, all wild-type yellow-to-red fluorescent proteins reported so far are obligately tetrameric and often toxic or disruptive. The first true monomer was mRFP1, derived from the Discosoma sp. fluorescent protein "DsRed" by directed evolution first to increase the speed of maturation, then to break each subunit interface while restoring fluorescence, which cumulatively required 33 substitutions. Although mRFP1 has already proven widely useful, several properties could bear improvement and more colors would be welcome. We report the next generation of monomers. The latest red version matures more completely, is more tolerant of N-terminal fusions and is over tenfold more photostable than mRFP1. Three monomers with distinguishable hues from yellow-orange to red-orange have higher quantum efficiencies.
荧光蛋白是通过基因编码的、易于成像的报告分子,在生物学和生物技术领域至关重要。当一种蛋白质通过与荧光蛋白融合而被标记时,荧光蛋白之间的相互作用可能会意外地干扰靶向或功能。不幸的是,迄今为止报道的所有野生型黄到红荧光蛋白都是 obligately 四聚体,并且常常具有毒性或破坏性。第一个真正的单体是 mRFP1,它是通过定向进化从 Discosoma 属荧光蛋白“DsRed”衍生而来的,首先提高成熟速度,然后在恢复荧光的同时破坏每个亚基界面,这累计需要 33 个替换。尽管 mRFP1 已经被证明具有广泛的用途,但仍有一些特性可以改进,更多的颜色将是受欢迎的。我们报道了下一代单体。最新的红色版本成熟得更完全,对 N 端融合更耐受,并且光稳定性比 mRFP1 高十倍以上。三种具有从黄橙色到红橙色可区分色调的单体具有更高的量子效率。
“obligately”这个词可能有误,推测可能是“obligatory”,意为“必须的, obligatory 四聚体”可译为“必然的四聚体” ,你可根据实际情况调整。