Möller A, Wild U, Riesner D, Gassen H G
Proc Natl Acad Sci U S A. 1979 Jul;76(7):3266-70. doi: 10.1073/pnas.76.7.3266.
From experiments with equilibrium dialysis it was concluded earlier that formation of the codon-anticodon complex triggers a conformational change in the tertiary structure of tRNAPhe from Escherichia coli. A similar conformational transition is demonstrated here in the poly(A)/tRNALys system. C-G-A or C-G-A-A was used as a probe for the conformational transition in tRNA. These probes bound to tRNAPhe and tRNALys more strongly in the presence of the corresponding codons than in the absence. In order to verify these data by an independent method, the decrease in absorbance at 300 nm that occurs on formation of the codon-anticodon complex in tRNALys (which contains 2-thio-5-methylaminomethyluridine, s2mam5U) was used. The binding constants for formation of A3 . tRNALys (Ka = 2.4 . 10(4) M-1) and A4 . tRNALys (Ka = 2.5 . 10(5) M-1) are very close to those obtained by equilibrium dialysis. In the presence of C-G-A the apparent binding constant of A3 to tRNA was raised 10-fold to 2.5 . 10(-5) M-1. It was calculated that the constant for the binding of C-G-A to the binary complex A3 . tRNALys is approximately 2 . 10(4) M-1, whereas binding to the free tRNA is lower than 10(3) M-1. Under appropriate conditions binding of A3 to tRNALys can be induced directly by the addition of C-G-A. These data demonstrate that codon-anticodon complex formation induces a conformational change in the tRNA that as a consequence allows the binding of a trinucleoside diphosphate, presumably to the T-psi-G region.
早期通过平衡透析实验得出结论,密码子 - 反密码子复合物的形成会引发来自大肠杆菌的苯丙氨酸转运核糖核酸(tRNAPhe)三级结构的构象变化。本文在聚腺苷酸(poly(A))/赖氨酸转运核糖核酸(tRNALys)系统中也证明了类似的构象转变。C - G - A 或 C - G - A - A 被用作 tRNA 构象转变的探针。与不存在相应密码子的情况相比,这些探针在相应密码子存在时与苯丙氨酸转运核糖核酸(tRNAPhe)和赖氨酸转运核糖核酸(tRNALys)的结合更强。为了通过独立方法验证这些数据,利用了赖氨酸转运核糖核酸(tRNALys,其含有 2 - 硫代 - 5 - 甲基氨基甲基尿苷,s2mam5U)中密码子 - 反密码子复合物形成时 300 nm 处吸光度的降低。A3与赖氨酸转运核糖核酸(tRNALys)形成复合物(Ka = 2.4×10⁴ M⁻¹)以及 A4与赖氨酸转运核糖核酸(tRNALys)形成复合物(Ka = 2.5×10⁵ M⁻¹)的结合常数与通过平衡透析获得的结果非常接近。在 C - G - A 存在的情况下,A3与 tRNA 的表观结合常数提高了 10 倍,达到 2.5×10⁻⁵ M⁻¹。据计算,C - G - A 与二元复合物 A3·赖氨酸转运核糖核酸(tRNALys)的结合常数约为 2×10⁴ M⁻¹,而与游离 tRNA 的结合低于 10³ M⁻¹。在适当条件下,通过添加 C - G - A 可直接诱导 A3与赖氨酸转运核糖核酸(tRNALys)的结合。这些数据表明,密码子 - 反密码子复合物的形成会诱导 tRNA 的构象变化,结果使得三磷酸核苷二磷酸可能与 T - ψ - G 区域结合。