Barts and The London School of Medicine and Dentistry, Queen Mary University of London, London, United Kingdom.
PLoS One. 2010 Mar 23;5(3):e9823. doi: 10.1371/journal.pone.0009823.
Fluorescent reporter proteins have proven useful for imaging techniques in many organisms. We constructed optimized expression systems for several fluorescent proteins from the far-red region of the spectrum and analyzed their utility in several mycobacterial species. Plasmids expressing variants of the Discosoma Red fluorescent protein (DsRed) from the Mycobacterium bovis hsp60 promoter were unstable; in contrast expression from the Mycobacterium smegmatis rpsA promoter was stable. In Mycobacterium tuberculosis expression of several of the far-red reporters was readily visualised by eye and three reporters (mCherry, tdTomato, and Turbo-635) fluoresced at a high intensity. Strains expressing mCherry showed no fitness defects in vitro or in macrophages. Treatment of cells with antibiotics demonstrated that mCherry could also be used as a reporter for cell death, since fluorescence decreased in the presence of a bactericidal compound, but remained stable in the presence of a bacteriostatic compound. mCherry was functional under hypoxic conditions; using mCherry we demonstrated that the P(mtbB) is expressed early in hypoxia and progressively down-regulated. mCherry and other far-red fluorescent proteins will have multiple uses in investigating the biology of mycobacteria, particularly under non-replicating, or low cell density conditions, as well as providing a novel means of detecting cell death rapidly.
荧光报告蛋白已被证明可用于许多生物体的成像技术。我们构建了来自远红光谱区域的几种荧光蛋白的优化表达系统,并分析了它们在几种分枝杆菌中的用途。表达来自牛分枝杆菌 hsp60 启动子的 Discosoma Red 荧光蛋白(DsRed)变体的质粒不稳定;相比之下,来自分枝杆菌 smegmatis rpsA 启动子的表达是稳定的。在结核分枝杆菌中,几种远红报告蛋白的表达可通过肉眼轻松观察到,并且三个报告蛋白(mCherry、tdTomato 和 Turbo-635)具有高强度荧光。在体外或巨噬细胞中,表达 mCherry 的菌株没有表现出适应性缺陷。用抗生素处理细胞表明,mCherry 也可用于作为细胞死亡的报告蛋白,因为在存在杀菌化合物的情况下荧光减少,但在存在抑菌化合物的情况下保持稳定。mCherry 在低氧条件下也具有功能;使用 mCherry,我们证明了 P(mtbB) 在低氧条件下早期表达,并逐渐下调。mCherry 和其他远红荧光蛋白将在研究分枝杆菌生物学方面具有多种用途,特别是在非复制或低细胞密度条件下,以及提供快速检测细胞死亡的新方法。