Department of Biochemistry and Molecular Biology, School of Biomedical Sciences, Monash University, Clayton, Victoria, Australia.
PLoS One. 2012;7(10):e47331. doi: 10.1371/journal.pone.0047331. Epub 2012 Oct 10.
Rtms5 is an deep blue weakly fluorescent GFP-like protein ([Formula: see text], 592 nm; [Formula: see text], 630nm; Φ(F), 0.004) that contains a (66)Gln-Tyr-Gly chromophore tripeptide sequence. We investigated the optical properties and structure of two variants, Rtms5(Y67F) and Rtms5(Y67F/H146S) in which the tyrosine at position 67 was substituted by a phenylalanine. Compared to the parent proteins the optical spectra for these new variants were significantly blue-shifted. Rtms5(Y67F) spectra were characterised by two absorbing species ([Formula: see text], 440 nm and 513 nm) and green fluorescence emission ([Formula: see text], 440 nm; [Formula: see text], 508 nm; Φ(F), 0.11), whilst Rtms5(Y67F/H146S) spectra were characterised by a single absorbing species ([Formula: see text], 440 nm) and a relatively high fluorescence quantum yield (Φ(F,) 0.75; [Formula: see text], 440 nm; [Formula: see text], 508 nm). The fluorescence emissions of each variant were remarkably stable over a wide range of pH (3-11). These are the first GFP-like proteins with green emissions (500-520 nm) that do not have a tyrosine at position 67. The X-ray crystal structure of each protein was determined to 2.2 Å resolution and showed that the benzylidine ring of the chromophore, similar to the 4-hydroxybenzylidine ring of the Rtms5 parent, is non-coplanar and in the trans conformation. The results of chemical quantum calculations together with the structural data suggested that the 513 nm absorbing species in Rtms5(Y67F) results from an unusual form of the chromophore protonated at the acylimine oxygen. These are the first X-ray crystal structures for fluorescent proteins with a functional chromophore containing a phenylalanine at position 67.
Rtms5 是一种深蓝色弱荧光 GFP 样蛋白([化学式:见正文],592nm;[化学式:见正文],630nm;Φ(F),0.004),含有一个(66)Gln-Tyr-Gly 发色团三肽序列。我们研究了两种变体 Rtms5(Y67F)和 Rtms5(Y67F/H146S)的光学性质和结构,其中位置 67 的酪氨酸被苯丙氨酸取代。与母体蛋白相比,这些新变体的光谱明显蓝移。Rtms5(Y67F)的光谱特征为两种吸收物种[化学式:见正文],440nm 和 513nm 和绿色荧光发射[化学式:见正文],440nm;[化学式:见正文],508nm;Φ(F),0.11,而 Rtms5(Y67F/H146S)的光谱特征为单一吸收物种[化学式:见正文],和相对较高的荧光量子产率(Φ(F),0.75;[化学式:见正文],440nm;[化学式:见正文],508nm)。每种变体的荧光发射在很宽的 pH 范围内(3-11)都非常稳定。这是第一批具有绿色发射(500-520nm)且位置 67 没有酪氨酸的 GFP 样蛋白。每种蛋白质的 X 射线晶体结构均解析至 2.2Å 分辨率,表明发色团的亚苄基环,类似于 Rtms5 母体的 4-羟基亚苄基环,是非共面的,并处于反式构象。化学量子计算的结果与结构数据一起表明,Rtms5(Y67F)中 513nm 吸收物种来自于发色团的一种异常形式,该形式在酰亚胺氧上质子化。这是第一批具有功能性发色团的荧光蛋白的 X 射线晶体结构,其中位置 67 含有苯丙氨酸。