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在73位和76位含有8-叠氮腺苷的酵母苯丙氨酸转运核糖核酸(tRNA(Phe))与大肠杆菌核糖体的光化学交联。

Photochemical cross-linking of yeast tRNA(Phe) containing 8-azidoadenosine at positions 73 and 76 to the Escherichia coli ribosome.

作者信息

Wower J, Hixson S S, Zimmermann R A

机构信息

Department of Biochemistry, University of Massachusetts, Amherst 01003.

出版信息

Biochemistry. 1988 Oct 18;27(21):8114-21. doi: 10.1021/bi00421a021.

Abstract

The 3'-terminal -A-C-C-A sequence of yeast tRNA(Phe) has been modified by replacing either adenosine-73 or adenosine-76 with the photoreactive analogue 8-azidoadenosine (8N3A). The incorporation of 8N3A into tRNA(Phe) was accomplished by ligation of 8-azidoadenosine 3',5'-bisphosphate to the 3' end of tRNA molecules which were shortened by either one or four nucleotides. Replacement of the 3'-terminal A76 with 8N3A completely blocked aminoacylation of the tRNA. In contrast, the replacement of A73 with 8N3A has virtually no effect on the aminoacylation of tRNA(Phe). Neither substitution hindered binding of the modified tRNAs to Escherichia coli ribosomes in the presence of poly(U). Photoreactive tRNA derivatives bound noncovalently to the ribosomal P site were cross-linked to the 50S subunit upon irradiation at 300 nm. Nonaminoacylated tRNA(Phe) containing 8N3A at either position 73 or position 76 cross-linked exclusively to protein L27. When N-acetylphenylalanyl-tRNA(Phe) containing 8N3A at position 73 was bound to the P site and irradiated, 23S rRNA was the main ribosomal component labeled, while smaller amounts of the tRNA were cross-linked to proteins L27 and L2. Differences in the labeling pattern of nonaminoacylated and aminoacylated tRNA(Phe) containing 8N3A in position 73 suggest that the aminoacyl moiety may play an important role in the proper positioning of the 3' end of tRNA in the ribosomal P site. More generally, the results demonstrate the utility of 8N3A-substituted tRNA probes for the specific labeling of ribosomal components at the peptidyltransferase center.

摘要

酵母苯丙氨酸转运RNA(tRNA(Phe))的3'-末端-A-C-C-A序列已通过用光反应性类似物8-叠氮腺苷(8N3A)取代腺苷-73或腺苷-76进行了修饰。将8N3A掺入tRNA(Phe)是通过将8-叠氮腺苷3',5'-二磷酸连接到tRNA分子的3'末端来实现的,这些tRNA分子的3'末端被缩短了一个或四个核苷酸。用8N3A取代3'-末端的A76完全阻断了tRNA的氨酰化作用。相比之下,用8N3A取代A73对tRNA(Phe)的氨酰化作用几乎没有影响。在存在聚尿苷酸(poly(U))的情况下,这两种取代都不妨碍修饰后的tRNA与大肠杆菌核糖体的结合。在300nm照射下,非共价结合到核糖体P位点的光反应性tRNA衍生物与50S亚基发生交联。在位置73或位置76含有8N3A的未氨酰化tRNA(Phe)仅与蛋白质L27发生交联。当在位置73含有8N3A的N-乙酰苯丙氨酰-tRNA(Phe)结合到P位点并受到照射时,23S核糖体RNA是被标记的主要核糖体成分,而少量的tRNA与蛋白质L27和L2发生交联。在位置73含有8N3A的未氨酰化和氨酰化tRNA(Phe)的标记模式差异表明,氨酰基部分可能在tRNA的3'末端在核糖体P位点的正确定位中起重要作用。更普遍地说,这些结果证明了8N3A取代的tRNA探针在肽基转移酶中心对核糖体成分进行特异性标记方面具有实用性。

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