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大肠杆菌中延伸因子Tu·GTP与缬氨酰-tRNA Val I之间复合物形成的小角X射线散射研究。

A small-angle X-ray scattering study of the complex formation between elongation factor Tu . GTP and valyl-tRNA Val I from Escherichia coli.

作者信息

Osterberg R, Sjöberg B, Ligaarden R, Elias P

出版信息

Eur J Biochem. 1981 Jun;117(1):155-9. doi: 10.1111/j.1432-1033.1981.tb06314.x.

Abstract

The complex formation between elongation factor Tu (EF-Tu) . GTP and valyl-tRNA Val 1 has been investigated using the small-angle X-ray scattering titration technique. The main species observed is a 1:1 complex with a stability constant log K greater than or equal to 6. The corresponding interaction between EF-Tu . GTP and non-aminoacylated tRNA appears to be much weaker with an estimated log K approximately equal to 4. The radius of gyration determined for the EF-Tu . GTP -- valyl-tRNA Val 1 complex is larger (R = 3.6 nm) than that of EF-Tu . GTP (R = 2.5 nm). Likewise, the maximum distance within this complex is larger (Dmax = 12.5 nm) than the one within EF-Tu . GTP (Dmax = 8.5 nm). These data as well as the p(r) curve are consistent with a multiellipsoid model for the complex. From this model it is indicated that the acceptor stem of tRNA is attached to EF-Tu and that the anticodon stem and loop protrude into the solution.

摘要

利用小角X射线散射滴定技术研究了延伸因子Tu(EF-Tu)·GTP与缬氨酰-tRNA Val 1之间的复合物形成。观察到的主要物种是一种1:1复合物,其稳定常数log K大于或等于6。EF-Tu·GTP与非氨酰化tRNA之间的相应相互作用似乎要弱得多,估计log K约为4。测定的EF-Tu·GTP-缬氨酰-tRNA Val 1复合物的回转半径(R = 3.6 nm)比EF-Tu·GTP的回转半径(R = 2.5 nm)大。同样,该复合物内的最大距离(Dmax = 12.5 nm)比EF-Tu·GTP内的最大距离(Dmax = 8.5 nm)大。这些数据以及p(r)曲线与该复合物的多椭球体模型一致。从该模型表明,tRNA的受体茎连接到EF-Tu,反密码子茎和环突出到溶液中。

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