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大肠杆菌核糖体信使核糖核酸结合区域的光亲和标记研究。

A photoaffinity labelling study of the messenger RNA-binding region of Escherichia coli ribosomes.

作者信息

Towbin H, Elson D

出版信息

Nucleic Acids Res. 1978 Sep;5(9):3389-407. doi: 10.1093/nar/5.9.3389.

Abstract

A photoaffinity labelling study of the messenger RNA-binding region of E. coli ribosomes has been made, using oligoadenylic acids as mRNA analogs. The oligonucleotides, of chain length 6 to 8 and thus several nucleotides longer than oligonucleotides previously employed for this purpose, carried a radioactive photolabile aromatic azide reagent bound covalently to the 3'-terminal ribose moiety. The synthesis of the reagent, p-azidobenzoyl-(3H)-glycylhydrazide, is described. The derivatized oligonucleotides were shown to be functional messengers. They stimulated the binding of the cognate aminoacyl-tRNA, lysyl-tRNA: their binding was reciprocally stimulated by lysyl-tRNA; and they competed with underivatized oligoadenylates for ribosomal binding sites. When the 70 S ribosomal binding complex was irradiated, the photolabile reagent reacted covalently with both RNA and proteins of the 30 S subunit and with tRNA, but not with the 50 S subunit. The 16 S RNA appeared to be labelled at more than one site. Of the proteins, S3 and S5 reacted with the reagent with high specificity; and the possibility was not eliminated that S4 may have been labelled to a minor degree. Functional studies in other laboratories have implicated S3 and S5 in the decoding process, but these proteins were not labelled by any of the previously reported mRNA affinity labelling analogs. The results reported here therefore indicate that S3 and S5 not only affect the decoding process, but are located in the mRNA-binding region of the ribosome, presumably to the 3' side of the decoding site.

摘要

利用寡聚腺苷酸作为信使核糖核酸(mRNA)类似物,对大肠杆菌核糖体的信使核糖核酸结合区域进行了光亲和标记研究。这些链长为6至8个核苷酸、比此前用于此目的的寡核苷酸长几个核苷酸的寡核苷酸,带有一种与3'-末端核糖部分共价结合的放射性光不稳定芳香叠氮试剂。文中描述了试剂对叠氮苯甲酰-(3H)-甘氨酰肼的合成。经衍生化的寡核苷酸被证明是有功能的信使分子。它们刺激了同源氨酰转运核糖核酸(tRNA),即赖氨酰-tRNA的结合:它们的结合受到赖氨酰-tRNA的反向刺激;并且它们与未衍生化的寡聚腺苷酸竞争核糖体结合位点。当70S核糖体结合复合物受到照射时,光不稳定试剂与30S亚基的核糖核酸(RNA)和蛋白质以及tRNA发生共价反应,但不与50S亚基反应。16S RNA似乎在不止一个位点被标记。在这些蛋白质中,S3和S5与试剂发生高度特异性反应;并且不能排除S4可能被少量标记的可能性。其他实验室的功能研究表明S3和S5参与解码过程,但这些蛋白质未被任何先前报道的mRNA亲和标记类似物标记。因此,本文报道的结果表明,S3和S5不仅影响解码过程,而且位于核糖体的mRNA结合区域,大概在解码位点的3'侧。

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