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半胱氨酸转运RNA半胱氨酸-延伸因子-Tu-鸟苷二磷酸三磷酸复合物的晶体结构揭示了三元复合物和转运RNA中的一般特征与特殊特征。

The crystal structure of Cys-tRNACys-EF-Tu-GDPNP reveals general and specific features in the ternary complex and in tRNA.

作者信息

Nissen P, Thirup S, Kjeldgaard M, Nyborg J

机构信息

Institute of Molecular and Structural Biology, Aarhus University, Gustav Wieds Vej 10, C DK 8000 Aarhus C, Denmark.

出版信息

Structure. 1999 Feb 15;7(2):143-56. doi: 10.1016/s0969-2126(99)80021-5.

Abstract

BACKGROUND

. The translation elongation factor EF-Tu in its GTP-bound state forms a ternary complex with any aminoacylated tRNA (aa-tRNA), except initiator tRNA and selenocysteinyl-tRNA. This complex delivers aa-tRNA to the ribosomal A site during the elongation cycle of translation. The crystal structure of the yeast Phe-tRNAPhe ternary complex with Thermus aquaticus EF-Tu-GDPNP (Phe-TC) has previously been determined as one representative of this general yet highly discriminating complex formation.

RESULTS

The ternary complex of Escherichia coli Cys-tRNACys and T. aquaticus EF-Tu-GDPNP (Cys-TC) has been solved and refined at 2.6 degrees resolution. Conserved and variable features of the aa-tRNA recognition and binding by EF-Tu-GTP have been revealed by comparison with the Phe-TC structure. New tertiary interactions are observed in the tRNACys structure. A 'kissing complex' is observed in the very close crystal packing arrangement.

CONCLUSIONS

The recognition of Cys-tRNACys by EF-Tu-GDPNP is restricted to the aa-tRNA motif previously identified in Phe-TC and consists of the aminoacylated 3' end, the phosphorylated 5' end and one side of the acceptor stem and T stem. The aminoacyl bond is recognized somewhat differently, yet by the same primary motif in EF-Tu, which suggests that EF-Tu adapts to subtle variations in this moiety among all aa-tRNAs. New tertiary interactions revealed by the Cys-tRNACys structure, such as a protonated C16:C59 pyrimidine pair, a G15:G48 'Levitt pair' and an s4U8:A14:A46 base triple add to the generic understanding of tRNA structure from sequence. The structure of the 'kissing complex' shows a quasicontinuous helix with a distinct shape determined by the number of base pairs.

摘要

背景

翻译延伸因子EF-Tu在其结合GTP的状态下,会与除起始tRNA和硒代半胱氨酰-tRNA之外的任何氨酰化tRNA(aa-tRNA)形成三元复合物。在翻译的延伸循环中,该复合物将aa-tRNA递送至核糖体A位点。酵母苯丙氨酰-tRNA苯丙氨酸(Phe-tRNAPhe)与嗜热栖热菌EF-Tu-GDPNP的三元复合物(Phe-TC)的晶体结构先前已被确定为这种普遍但高度特异性复合物形成的一个代表。

结果

已解析并以2.6埃分辨率精修了大肠杆菌半胱氨酰-tRNA半胱氨酸(Cys-tRNACys)与嗜热栖热菌EF-Tu-GDPNP的三元复合物(Cys-TC)。通过与Phe-TC结构比较,揭示了EF-Tu-GTP对aa-tRNA识别和结合的保守及可变特征。在tRNACys结构中观察到了新的三级相互作用。在非常紧密的晶体堆积排列中观察到了“亲吻复合物”。

结论

EF-Tu-GDPNP对Cys-tRNACys的识别局限于先前在Phe-TC中鉴定出的aa-tRNA基序,该基序由氨酰化的3'端、磷酸化的5'端以及受体茎和T茎的一侧组成。氨酰键的识别方式略有不同,但在EF-Tu中由相同的主要基序识别,这表明EF-Tu能适应所有aa-tRNAs中该部分的细微变化。Cys-tRNACys结构揭示的新的三级相互作用,如质子化的C16:C59嘧啶对、G15:G48“莱维特对”和s4U8:A14:A46碱基三联体,增进了从序列对tRNA结构的一般理解。“亲吻复合物”的结构显示出一个准连续螺旋,其独特形状由碱基对数量决定。

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