Ip Denis Tsz-Ming, Wong Kam-Bo, Wan David Chi-Cheong
Department of Biochemistry, The Chinese University of Hong Kong, Shatin, New Territories, Hong Kong SAR, China.
Mar Biotechnol (NY). 2007 Jul-Aug;9(4):469-78. doi: 10.1007/s10126-007-9005-5. Epub 2007 May 27.
A novel orange fluorescent protein (OFP) was cloned from the tentacles of Cnidarian tube anemone Cerianthus sp. It consists of 222 amino acid residues with a calculated molecular mass of 25.1 kDa. A BLAST protein sequence homology search revealed that native OFP has 81% sequence identity to Cerianthus membranaceus green fluorescent protein (cmFP512), 38% identity to Entacmaea quadricolor red fluorescent protein (eqFP611), 37% identity to Discosoma red fluorescent protein (DsRed), 36% identity to Fungia concinna Kusabira-orange fluorescent protein (KO), and a mere 21% identity to green fluorescent protein (GFP). It is most likely that OFP also adopts the 11-strand beta-barrel structure of fluorescent proteins. Spectroscopic analysis indicated that it has a wide absorption spectrum peak at 548 nm with two shoulders at 487 and 513 nm. A bright orange fluorescence maximum at 573 nm was observed when OFP was excited at 515 nm or above. When OFP was excited well below 515 nm, a considerable amount of green emission maximum at 513 nm was also observed. It has a fluorescence quantum yield (Phi) of 0.64 at 25 degrees C. The molar absorption coefficients (epsilon) of folded OFP at 278 and 548 nm are 47,000 and 60,000 M(-1) x cm(-1), respectively. Its fluorescent brightness (epsilon Phi) at 25 degrees C is 38,400 M(-1) x cm(-1). Like other orange-red fluorescent proteins, OFP is also tetrameric. It was readily expressed as soluble protein in Escherichia coli at 37 degrees C, and no aggregate was observed in transfected HeLa cells under our experimental conditions. Fluorescent intensity of OFP is detectable over a pH range of 3 to 12.
一种新型橙色荧光蛋白(OFP)是从刺胞动物管海葵Cerianthus sp.的触须中克隆出来的。它由222个氨基酸残基组成,计算分子量为25.1 kDa。蛋白质序列的BLAST同源性搜索显示,天然OFP与膜海葵绿色荧光蛋白(cmFP512)的序列同一性为81%,与四色海葵红色荧光蛋白(eqFP611)的同一性为38%,与盘状珊瑚红色荧光蛋白(DsRed)的同一性为37%,与美丽蕈珊瑚 Kusabira-橙色荧光蛋白(KO)的同一性为36%,而与绿色荧光蛋白(GFP)的同一性仅为21%。OFP很可能也采用荧光蛋白的11链β桶结构。光谱分析表明,它在548 nm处有一个宽吸收光谱峰,在487和513 nm处有两个肩峰。当OFP在515 nm或更高波长激发时,在573 nm处观察到明亮的橙色荧光最大值。当OFP在远低于515 nm的波长激发时,在513 nm处也观察到相当数量的绿色发射最大值。在25℃时,它的荧光量子产率(Phi)为0.64。折叠后的OFP在278和548 nm处的摩尔吸收系数(epsilon)分别为47,000和60,000 M(-1) x cm(-1)。它在25℃时的荧光亮度(epsilon Phi)为38,400 M(-1) x cm(-1)。与其他橙红色荧光蛋白一样,OFP也是四聚体。它在37℃的大肠杆菌中很容易表达为可溶性蛋白,在我们的实验条件下,转染的HeLa细胞中未观察到聚集物。在pH值为3至12的范围内可检测到OFP的荧光强度。