McClain W H, Chen Y M, Foss K, Schneider J
Department of Bacteriology, University of Wisconsin, Madison 53706.
Science. 1988 Dec 23;242(4886):1681-4. doi: 10.1126/science.2462282.
The aminoacylation specificity ("acceptor identity") of transfer RNAs (tRNAs) has previously been associated with the position of particular nucleotides, as opposed to distinctive elements of three-dimensional structure. The contribution of a G.U wobble pair in the acceptor helix of tRNA(Ala) to acceptor identity was examined with synthetic amber suppressor tRNAs in Escherichia coli. The acceptor identity was not affected by replacing the G.U wobble pair in tRNA(Ala) with a G.A, C.A, or U.U wobble pair. Furthermore, a tRNA(Ala) acceptor identity was conferred on tRNA(Lys) when the same site in the acceptor helix was replaced with any of several wobble pairs. Additional data with tRNA(Ala) show that a substantial acceptor identity was retained when the G.U wobble pair was translocated to another site in the acceptor helix. These results suggest that the G.U wobble pair induces an irregularity in the acceptor helix of tRNA(Ala) to match a complementary structure in the aminoacylating enzyme.
此前,转运RNA(tRNA)的氨酰化特异性(“受体识别性”)一直与特定核苷酸的位置相关,而非三维结构的独特元件。利用大肠杆菌中的合成琥珀抑制tRNA,研究了tRNA(Ala)受体螺旋中的G·U摆动配对对受体识别性的贡献。将tRNA(Ala)中的G·U摆动配对替换为G·A、C·A或U·U摆动配对,受体识别性并未受到影响。此外,当受体螺旋中的同一位点被几个摆动配对中的任何一个替换时,tRNA(Lys)获得了tRNA(Ala)的受体识别性。tRNA(Ala)的其他数据表明,当G·U摆动配对转移到受体螺旋中的另一个位点时,仍保留了相当程度的受体识别性。这些结果表明,G·U摆动配对在tRNA(Ala)的受体螺旋中诱导了一种不规则性,以匹配氨酰化酶中的互补结构。