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嗜热栖热菌中编码真细菌亮氨酸响应性全局转录调节因子Lrp的古细菌同源物的lrp基因的克隆与鉴定。

Cloning and identification of the Sulfolobus solfataricus lrp gene encoding an archaeal homologue of the eubacterial leucine-responsive global transcriptional regulator Lrp.

作者信息

Charlier D, Roovers M, Thia-Toong T L, Durbecq V, Glansdorff N

机构信息

Research Institute of the CERIA-COOVI, Brussels, Belgium.

出版信息

Gene. 1997 Nov 12;201(1-2):63-8. doi: 10.1016/s0378-1119(97)00428-9.

Abstract

The lrp gene of the extreme thermophilic archaeon Sulfolofus solfataricus, encoding a homologue of the eubacterial global leucine-responsive regulatory protein, was identified by DNA sequencing and sequence comparisons on a 6.9-kb genomic fragment cloned into Escherichia coli. The S. solfataricus Lrp subunit is a 155-aa polypeptide that bears between 24.5 and 29% sequence identity with eubacterial regulatory proteins of the Lrp/AsnC family and 30.6% and 25.8% with the archaeal homologues of respectively Methanococcus jannaschii and Pyrococcus furiosus. Transcription initiation from the strong S. solfataricus lrp promoter was analyzed by primer extension mapping. The abundance of the S. solfataricus lrp messenger strongly suggests that this protein might function in archaea as a global transcriptional regulator and genome organizer, as proposed for E. coli Lrp, rather than as a local, specific regulatory protein. Our findings suggest the presence of a eubacterial type of regulatory mechanism in archaea, a situation that is noteworthy indeed, since the transcriptional machinery of archaea is more closely related to that of eukaryotes, whereas these latter apparently do not possess a homologue of Lrp.

摘要

通过对克隆到大肠杆菌中的一个6.9 kb基因组片段进行DNA测序和序列比较,鉴定出了嗜热古菌嗜热栖热菌(Sulfolofus solfataricus)的lrp基因,该基因编码真细菌全局亮氨酸响应调节蛋白的同源物。嗜热栖热菌Lrp亚基是一种155个氨基酸的多肽,与Lrp/AsnC家族的真细菌调节蛋白具有24.5%至29%的序列同一性,与詹氏甲烷球菌(Methanococcus jannaschii)和激烈火球菌(Pyrococcus furiosus)的古菌同源物分别具有30.6%和25.8%的序列同一性。通过引物延伸图谱分析了嗜热栖热菌lrp强启动子的转录起始。嗜热栖热菌lrp信使RNA的丰度强烈表明,该蛋白在古菌中可能作为全局转录调节因子和基因组组织者发挥作用,正如对大肠杆菌Lrp所提出的那样,而不是作为局部的、特异性的调节蛋白。我们的发现表明古菌中存在一种真细菌类型的调节机制,这种情况确实值得注意,因为古菌的转录机制与真核生物的转录机制更为密切相关,而后者显然不具有Lrp的同源物。

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