Ohyama T, Nishikawa K, Takemura S
J Biochem. 1986 Mar;99(3):859-66. doi: 10.1093/oxfordjournals.jbchem.a135546.
The nucleotide sequence of T. utilis tRNATyr has been modified to have a deletion or substitution of the "conserved" nucleotide sequence Gm18-G19 in the D-loop by enzymatic procedures in vitro. Conformations of the variant tRNAs were analyzed by measuring melting profiles and electrophoretic mobilities in "native" polyacrylamide gels, and by examining the RNase T1 digestion patterns in sequencing gels. The results obtained shed light on the importance of the interaction between the sequence Gm18-G19 and nucleotides in the T psi C-loop (probably psi 57-C58) for the maintenance of the total conformation of tRNATyr in solution. The association of D-loop and T psi C-loop regions in the variant tRNATyrs is slightly relaxed even at room temperature and melting occurred at temperatures higher than 40 degrees C. The relationship between the tertiary structure of the variant tRNA and its aminoacylation capacity was assayed at various temperatures. The results indicate that highly ordered tertiary structure is needed for tRNATyr to be fully aminoacylated.
利用体外酶促方法,对产朊假丝酵母tRNATyr的核苷酸序列进行了修饰,使其D环中“保守”的核苷酸序列Gm18 - G19发生缺失或替换。通过测量“天然”聚丙烯酰胺凝胶中的解链曲线和电泳迁移率,以及检测测序凝胶中的核糖核酸酶T1消化模式,对变体tRNA的构象进行了分析。所得结果揭示了Gm18 - G19序列与TψC环(可能是ψ57 - C58)中的核苷酸之间的相互作用对于维持溶液中tRNATyr整体构象的重要性。即使在室温下,变体tRNATyr中D环和TψC环区域的缔合也略有松弛,并且在高于40℃的温度下发生解链。在不同温度下测定了变体tRNA的三级结构与其氨酰化能力之间的关系。结果表明,tRNATyr要完全氨酰化需要高度有序的三级结构。