Eilers M, Reeves P J, Ying W, Khorana H G, Smith S O
Department of Biochemistry and Cell Biology, State University of New York, Stony Brook, NY 11794-5215, USA.
Proc Natl Acad Sci U S A. 1999 Jan 19;96(2):487-92. doi: 10.1073/pnas.96.2.487.
The apoprotein corresponding to the mammalian photoreceptor rhodopsin has been expressed by using suspension cultures of HEK293S cells in defined media that contained 6-15N-lysine and 2-13C-glycine. Typical yields were 1.5-1.8 mg/liter. Incorporation of 6-15N-lysine was quantitative, whereas that of 2-13C-glycine was about 60%. The rhodopsin pigment formed by binding of 11-cis retinal was spectrally indistinguishable from native bovine rhodopsin. Magic angle spinning (MAS) NMR spectra of labeled rhodopsin were obtained after its incorporation into liposomes. The 15N resonance corresponding to the protonated retinylidene Schiff base nitrogen was observed at 156.8 ppm in the MAS spectrum of 6-15N-lysine-labeled rhodopsin. This chemical shift corresponds to an effective Schiff base-counterion distance of greater than 4 A, consistent with structural water in the binding site hydrogen bonded with the Schiff base nitrogen and the Glu-113 counterion. The present study demonstrates that structural studies of rhodopsin and other G protein-coupled receptors by using MAS NMR are feasible.
通过在含有6-¹⁵N-赖氨酸和2-¹³C-甘氨酸的限定培养基中使用HEK293S细胞悬浮培养物,表达了与哺乳动物光感受器视紫红质相对应的载脂蛋白。典型产量为1.5-1.8毫克/升。6-¹⁵N-赖氨酸的掺入是定量的,而2-¹³C-甘氨酸的掺入约为60%。由11-顺式视黄醛结合形成的视紫红质色素在光谱上与天然牛视紫红质无法区分。将标记的视紫红质掺入脂质体后,获得了其魔角旋转(MAS)核磁共振谱。在6-¹⁵N-赖氨酸标记的视紫红质的MAS谱中,观察到与质子化视黄叉席夫碱氮相对应的¹⁵N共振在156.8 ppm处。这种化学位移对应于大于4 Å的有效席夫碱-抗衡离子距离,这与结合位点中与席夫碱氮和Glu-113抗衡离子氢键结合的结构水一致。本研究表明,使用MAS核磁共振对视紫红质和其他G蛋白偶联受体进行结构研究是可行的。