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DNA促旋酶与原核生物重复基因外回文序列家族相结合。

DNA gyrase binds to the family of prokaryotic repetitive extragenic palindromic sequences.

作者信息

Yang Y, Ames G F

机构信息

Department of Biochemistry, University of California, Berkeley 94720.

出版信息

Proc Natl Acad Sci U S A. 1988 Dec;85(23):8850-4. doi: 10.1073/pnas.85.23.8850.

Abstract

A family of repetitive extragenic palindromic (REP) sequences is composed of hundreds of copies distributed throughout the chromosome. Their palindromic nature and conservation suggested that they are specifically recognized by a protein(s). We have identified DNA gyrase [DNA topoisomerase (ATP-hydrolysing), EC 5.99.1.3] as one of the REP-binding proteins. Gyrase has at least a 10-fold higher affinity for DNA containing REP sequences than for DNA not containing REP sequences. Binding effectiveness correlates directly with the number of REP sequences in the DNA. DNase I footprinting shows that gyrase protects 205 base pairs on a REP-containing DNA fragment enclosing the REP sequences. In agreement with the above results, a comparison of the REP consensus sequence with the sequence of previously identified pBR322 "strong" gyrase cleavage sites reveals a high degree of homology. Because REP sequences are numerous and found throughout the genome, we suggest they have physiological functions mediated through their interaction with gyrase, such as being sites of action for the maintenance of DNA supercoiling. In addition, we speculate that these interactions may be of a structural nature, such as involvement in the higher-order structure of the bacterial chromosome.

摘要

一个重复的基因外回文(REP)序列家族由分布在整个染色体上的数百个拷贝组成。它们的回文性质和保守性表明它们被一种或多种蛋白质特异性识别。我们已确定DNA促旋酶[DNA拓扑异构酶(ATP水解),EC 5.99.1.3]是一种REP结合蛋白。促旋酶对含有REP序列的DNA的亲和力比对不含有REP序列的DNA至少高10倍。结合效率与DNA中REP序列的数量直接相关。DNase I足迹分析表明,促旋酶可保护包含REP序列的DNA片段上围绕REP序列的205个碱基对。与上述结果一致,将REP共有序列与先前鉴定的pBR322“强”促旋酶切割位点的序列进行比较,发现高度同源。由于REP序列数量众多且存在于整个基因组中,我们认为它们具有通过与促旋酶相互作用介导的生理功能,例如作为维持DNA超螺旋的作用位点。此外,我们推测这些相互作用可能具有结构性质,例如参与细菌染色体的高级结构。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/69f5/282604/e33b1f960285/pnas00302-0090-a.jpg

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