Dubbs J M, Tabita F R
Department of Microbiology and the Plant Molecular Biology/Biotechnology Program, The Ohio State University, Columbus, Ohio 43210-1292, USA.
J Bacteriol. 1998 Sep;180(18):4903-11. doi: 10.1128/JB.180.18.4903-4911.1998.
A number of cbbFI::lacZ translational fusion plasmids containing various lengths of sequence 5' to the form I (cbbI) Calvin-Benson-Bassham cycle operon (cbbFIcbbPIcbbAIcbbLIcbbSI) of Rhodobacter sphaeroides were constructed. Expression of beta-galactosidase was monitored under a variety of growth conditions. It was found that 103 bp of sequence upstream of the cbbFI transcription start was sufficient to confer low levels of regulated cbbI promoter expression; this activity was dependent on the presence of an intact cbbR gene. Additionally, R. sphaeroides CbbR was shown to bind to the region between 9 and 100 bp 5' to the cbbFI transcription start. Inclusion of an additional upstream sequence, from 280 to 636 bp 5' to cbbFI, resulted in a significant increase in regulated cbbI promoter expression under all growth conditions tested. A 50-bp region responsible for the majority of this increase occurs between 280 and 330 bp 5' to cbbFI. The additional 306 bp of upstream sequence from 330 to 636 bp also appears to play a positive regulatory role. A 4-bp deletion 281 to 284 bp 5' to cbbFI significantly reduced cbbI expression while the proper regulatory pattern was retained. These studies provide evidence for the presence of two functionally distinct regions of the cbbI promoter, with the distal domain providing significant regulated promoter activity that adheres to the normal pattern of expression.
构建了多个含有不同长度序列(位于球形红细菌I型(cbbI)卡尔文-本森-巴斯姆循环操纵子(cbbFIcbbPIcbbAIcbbLIcbbSI)5'端)的cbbFI::lacZ翻译融合质粒。在多种生长条件下监测β-半乳糖苷酶的表达。发现cbbFI转录起始位点上游103 bp的序列足以赋予cbbI启动子低水平的调控表达;这种活性依赖于完整cbbR基因的存在。此外,球形红细菌CbbR被证明能结合到cbbFI转录起始位点5'端9至100 bp之间的区域。包含cbbFI 5'端另外280至636 bp的上游序列,导致在所有测试的生长条件下,cbbI启动子的调控表达显著增加。导致这种增加的大部分的一个50 bp区域位于cbbFI 5'端280至330 bp之间。330至636 bp的另外306 bp上游序列似乎也发挥着正调控作用。cbbFI 5'端281至284 bp处的一个4 bp缺失显著降低了cbbI的表达,同时保留了正常的调控模式。这些研究为cbbI启动子存在两个功能不同的区域提供了证据,远端结构域提供了显著的调控启动子活性,且遵循正常的表达模式。