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核糖体蛋白与核酸的相互作用。I. 从与16S rRNA结合的30S蛋白S8中分离出一个多肽片段。

Ribosomal protein-nucleic acid interactions. I. Isolation of a polypeptide fragment from 30S protein S8 which binds to 16S rRNA.

作者信息

Bruce J, Firpo E J, Schaup H W

出版信息

Nucleic Acids Res. 1977 Oct;4(10):3327-40. doi: 10.1093/nar/4.10.3327.

Abstract

Within the bacterial ribosome a large number of specific protein and rRNA interactions appear to be required for assembly of the particle and its subsequent function in protein synthesis. In this communication it is shown that it is possible to isolate cyanogen bromide digestion products from ribosomal 30S protein S8 which will interact stoichiometrically with 16S rRNA. In addition to this a small binding polypeptide was generated from S8-16S rRNA complexes which were treated with proteinase K. The digestion of the complex yields a "protected" fragment of protein S8 which binds to 16S-rRNA. The isolated fragment will reassociate with 16S rRNA. It is not displaced by other 30S ribosomal proteins and blocks the binding of intact S8 to 16S rRNA. The size the possible structure of the S8 protein binding site are discussed and compared with the binding of cyanogen bromide digestion products which bind to 16S rRNA.

摘要

在细菌核糖体中,粒子的组装及其随后在蛋白质合成中的功能似乎需要大量特定的蛋白质与rRNA相互作用。在本通讯中表明,有可能从核糖体30S蛋白S8中分离出溴化氰消化产物,这些产物将与16S rRNA进行化学计量相互作用。除此之外,用蛋白酶K处理S8 - 16S rRNA复合物会产生一个小的结合多肽。复合物的消化产生了与16S - rRNA结合的蛋白质S8的“受保护”片段。分离出的片段将与16S rRNA重新结合。它不会被其他30S核糖体蛋白取代,并阻止完整的S8与16S rRNA结合。讨论了S8蛋白结合位点的大小和可能的结构,并与结合到16S rRNA的溴化氰消化产物的结合进行了比较。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4902/342656/e7fbe93bc595/nar00483-0061-a.jpg

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