Wu Liangxing, Burgess Kevin
Department of Chemistry, Texas A & M University, Box 30012, College Station, Texas 77841, USA.
J Am Chem Soc. 2008 Mar 26;130(12):4089-96. doi: 10.1021/ja710388h. Epub 2008 Mar 6.
Eight B-containing compounds, i.e., 1a-h, were prepared as mimics of the green fluorescent protein (GFP) fluorophore. The underlying concept was that synthetic GFP chromophore analogues are not fluorescent primarily because of free rotation about an aryl-alkene bond (Figure 1b). This rotation is not possible in the beta-barrel of GFP; hence, the molecule is strongly fluorescent. In compounds 1a-h, radiationless decay via this mechanism is prevented by complexation of the BF2 entity. The target materials were prepared via two methods; most were obtained according to the novel route shown in Scheme 1b, but compound 1f was made via the procedure described in Scheme 2. Both syntheses involved formation of undesired compounds E-4a-h that formed simultaneously with the desired isomeric intermediates Z-4a-h. Both compounds form BF2 adducts, i.e., 1a-h and 5a-h, respectively. Methods used for spectroscopic characterization and differentiation of compounds in the series 1 and 5 are discussed, and these are supported by single-crystal X-ray diffraction analyses for compounds 1c, 5c, 1f, and 5f. Electronic spectra of compounds 1a-h and 5a-h were studied in detail. Those in the 5 series were shown to be only weakly fluorescent, but the 1 series were strongly fluorescent compounds (comparable to the boraindacene, BODIPY, dyes). Compounds 1g and 1h are water soluble, and 1h has particularly significant potential as a probe, since it also has a carboxylic acid group for attachment to biomolecules.
制备了八种含硼化合物,即1a - h,作为绿色荧光蛋白(GFP)荧光团的模拟物。其基本概念是,合成的GFP发色团类似物不具有荧光主要是因为芳基 - 烯烃键的自由旋转(图1b)。在GFP的β - 桶结构中这种旋转是不可能的;因此,该分子具有强烈的荧光。在化合物1a - h中,通过BF₂实体的络合阻止了通过这种机制的无辐射衰变。目标材料通过两种方法制备;大多数是根据方案1b所示的新路线获得的,但化合物1f是通过方案2中描述的步骤制备 的。两种合成方法都涉及到与所需的异构体中间体Z - 4a - h同时形成的不需要的化合物E - 4a - h。这两种化合物分别形成BF₂加合物,即1a - h和5a - h。讨论了用于该系列化合物1和5的光谱表征和区分的方法,并且化合物1c、5c、1f和5f的单晶X射线衍射分析支持了这些方法。详细研究了化合物1a - h和5a - h的电子光谱。结果表明,5系列中的化合物仅具有弱荧光,而1系列是强荧光化合物(与硼茚并二烯、BODIPY染料相当)。化合物1g和1h是水溶性的,并且1h作为探针具有特别显著的潜力,因为它还具有一个用于连接生物分子的羧酸基团。