Aizawa K, Ohhata S, Nishie H, Ohsaka A, Kato K, Matsushita K, Hioka K
Biochem Biophys Res Commun. 1987 Jul 31;146(2):791-6. doi: 10.1016/0006-291x(87)90599-7.
Terbium (Tb), a rare earth element having an ionic radius similar to that of Ca2+, is used as an antagonist of Ca2+. Recently, we found that when giant axon membrane of a loligo treated with Tb was excited at 290 nm, where tryptophan (Trp) gives absorption mechanism, emits fluorescence of Tb at 490 nm and 545 nm in addition to that of Trp at 345 nm. The present study was undertaken to locate on the Trp molecule the interaction between Trp and Tb by carrying out in vitro binding experiments with Tb and Trp and the molecular mechanism was analyzed by 1H-NMR spectroscopy and fluorescence spectroscopy. Fluorescence spectroscopy showed that Tb and Trp are combined at a molecular ratio close to 1:1. 1H-NMR spectroscopy revealed that Tb interacts with the amino group at the alpha-position and the imido group of the indole ring of Trp. Since all amino groups of Trp are involved in peptide linkages in vivo, it seems likely that the binding of Tb to Trp is undertaken by the imido group of the indole ring.
铽(Tb)是一种离子半径与Ca2+相似的稀土元素,用作Ca2+的拮抗剂。最近,我们发现,在用Tb处理的枪乌贼巨大轴突膜在290nm激发时(色氨酸(Trp)在此处产生吸收机制),除了345nm处Trp的荧光外,还会在490nm和545nm处发出Tb的荧光。本研究通过进行Tb与Trp的体外结合实验,来确定Trp分子上Trp与Tb之间的相互作用,并通过1H-NMR光谱和荧光光谱分析其分子机制。荧光光谱表明,Tb与Trp以接近1:1的分子比例结合。1H-NMR光谱显示,Tb与Trp吲哚环α位的氨基和亚氨基相互作用。由于Trp的所有氨基在体内都参与肽键形成,因此Tb与Trp的结合似乎是由吲哚环的亚氨基进行的。