Ferguson B Q, Yang D C
Biochemistry. 1986 Feb 11;25(3):529-39. doi: 10.1021/bi00351a002.
Five species of tRNAfMet labeled with a single fluorophore are prepared to analyze the conformational changes at the 3'-end, at dihydrouridine, and at thiouridine in tRNAfMet upon binding of methionyl-tRNA synthetase. The emission and excitation spectra, anisotropy, and solvent accessibility of the fluorophore in each of the modified tRNAfMet's are determined in the absence and presence of methionyl-tRNA synthetase. The results are consistent with the following. The probes at the 3'-end are in a nonpolar environment, mobile relative to the tRNA molecule, and fully exposed to the solvent. The probes at dihydrouridine are partially stacked over the neighboring bases, nearly immobile, and relatively inaccessible. The S8-C13 cross-linked product is rigid. Upon binding of methionyl-tRNA synthetase, the probes at the 3'-terminus become localized in a less polar environment, highly immobilized, and effectively shielded against solvent access, while the probes at dihydrouridine appear to be partially unstacked from the neighboring base and become slightly more accessible for solvent. Singlet-singlet energy transfer between the intrinsic protein fluorescence and the fluorophores in modified tRNA's was observed by sensitized emission for tRNAfMet modified at the 3'-end and for S8-C13 but not for tRNAfMet's modified at dihydrouridine. These results suggest that dihydrouridine in tRNAfMet is oriented away from methionyl-tRNA synthetase in the tRNA-enzyme complex.
制备了五种用单个荧光团标记的甲硫氨酸起始tRNA(tRNAfMet),以分析甲硫氨酰-tRNA合成酶结合后tRNAfMet 3'-末端、二氢尿苷和硫代尿苷处的构象变化。在不存在和存在甲硫氨酰-tRNA合成酶的情况下,测定了每种修饰的tRNAfMet中荧光团的发射光谱和激发光谱、各向异性以及溶剂可及性。结果如下。3'-末端的探针处于非极性环境中,相对于tRNA分子可移动,并完全暴露于溶剂中。二氢尿苷处的探针部分堆叠在相邻碱基上,几乎不可移动,且相对难以接近。S8-C13交联产物是刚性的。甲硫氨酰-tRNA合成酶结合后,3'-末端的探针定位在极性较小的环境中,高度固定,有效地免受溶剂接触,而二氢尿苷处的探针似乎部分从相邻碱基上解堆叠,对溶剂的可及性略有增加。通过敏化发射观察到天然蛋白质荧光与修饰tRNA中的荧光团之间的单重态-单重态能量转移,但仅在3'-末端修饰的tRNAfMet和S8-C13修饰的tRNAfMet中观察到,而在二氢尿苷修饰的tRNAfMet中未观察到。这些结果表明,在tRNA-酶复合物中,tRNAfMet中的二氢尿苷远离甲硫氨酰-tRNA合成酶。