Jaxel C, Bouthier de la Tour C, Duguet M, Nadal M
Institut de Génétique et de Microbiologie, URA 1354, Université Paris Sud, Orsay, France.
Nucleic Acids Res. 1996 Dec 1;24(23):4668-75. doi: 10.1093/nar/24.23.4668.
We cloned and sequenced a DNA fragment from the thermophilic archaeal strain Sulfolobus shibatae B12 that includes the gene topR encoding the reverse gyrase. The RNA of the reverse gyrase gene was characterized indicating that the topR gene is fully functional in vivo. We showed by primer extension analysis that transcription of topR initiates 28 bp downstream from a consensus A-box promoter. In order to understand how this particular type I DNA topoisomerase introduces positive superturns into the DNA, we compared the amino acid sequence of reverse gyrase from S.shibatae with the two other known reverse gyrases. This comparison indicates a common organization of these proteins: the carboxy-terminal domain is related to the type I-5' topoisomerase family while the amino-terminal domain possesses some motifs of proteins described as RNA or DNA helicases. By using local alignments, we showed that (i) reverse gyrases constitute a new and rather homogenous group within the type I-5' DNA topoisomerase family; (ii) a careful sequence analysis of the amino-terminal domain allows us to relate the presence of some motifs with an ATP binding and hydrolysis reaction coupled to a DNA binding and unwinding activity.
我们从嗜热古菌柴田硫化叶菌B12中克隆并测序了一个DNA片段,该片段包含编码反向旋转酶的topR基因。对反向旋转酶基因的RNA进行了表征,表明topR基因在体内具有完整功能。我们通过引物延伸分析表明,topR的转录起始于一个共有A框启动子下游28 bp处。为了了解这种特殊的I型DNA拓扑异构酶如何将正超螺旋引入DNA,我们将柴田硫化叶菌反向旋转酶的氨基酸序列与其他两种已知的反向旋转酶进行了比较。这种比较表明了这些蛋白质的共同结构:羧基末端结构域与I-5'型拓扑异构酶家族相关,而氨基末端结构域具有一些被描述为RNA或DNA解旋酶的蛋白质基序。通过局部比对,我们发现:(i)反向旋转酶在I-5'型DNA拓扑异构酶家族中构成一个新的且相当同质的群体;(ii)对氨基末端结构域进行仔细的序列分析,使我们能够将一些基序的存在与ATP结合和水解反应以及DNA结合和解旋活性联系起来。