Liu Z J, Vysotski E S, Chen C J, Rose J P, Lee J, Wang B C
Department of Biochemistry and Molecular Biology, University of Georgia, Athens 30602, USA.
Protein Sci. 2000 Nov;9(11):2085-93. doi: 10.1110/ps.9.11.2085.
The crystal structure of the photoprotein obelin (22.2 kDa) from Obelia longissima has been determined and refined to 1.7 A resolution. Contrary to the prediction of a peroxide, the noncovalently bound substrate, coelenterazine, has only a single oxygen atom bound at the C2-position. The protein-coelenterazine 2-oxy complex observed in the crystals is photo-active because, in the presence of calcium ion, bioluminescence emission within the crystal is observed. This structure represents only the second de novo protein structure determined using the anomalous scattering signal of the sulfur substructure in the crystal. The method used here is theoretically different from that used for crambin in 1981 (4.72 kDa) and represents a significant advancement in protein crystal structure determination.
已确定并将来自长柄海鳃的光蛋白腔肠素(22.2 kDa)的晶体结构精修至1.7 Å分辨率。与过氧化物的预测相反,非共价结合的底物腔肠素仅在C2位结合有单个氧原子。在晶体中观察到的蛋白质-腔肠素2-氧基复合物具有光活性,因为在钙离子存在下,可观察到晶体内的生物发光发射。该结构是仅利用晶体中硫亚结构的反常散射信号确定的第二个从头蛋白质结构。这里使用的方法在理论上不同于1981年用于胰凝乳蛋白酶原(4.72 kDa)的方法,代表了蛋白质晶体结构测定的重大进展。