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新月柄杆菌鞭毛基因的转录激活和负向自动调节都需要多种结构蛋白。

Multiple structural proteins are required for both transcriptional activation and negative autoregulation of Caulobacter crescentus flagellar genes.

作者信息

Ramakrishnan G, Zhao J L, Newton A

机构信息

Department of Molecular Biology, Princeton University, New Jersey 08544-1014.

出版信息

J Bacteriol. 1994 Dec;176(24):7587-600. doi: 10.1128/jb.176.24.7587-7600.1994.

Abstract

The periodic and sequential expression of flagellar (fla) genes in the Caulobacter crescentus cell cycle depends on their organization into levels I to IV of a regulatory hierarchy in which genes at the top of the hierarchy are expressed early in the cell cycle and are required for the later expression of genes below them. In these studies, we have examined the regulatory role of level II fliF operon, which is located near the top of the hierarchy. The last gene in the fliF operon, flbD, encodes a transcriptional factor required for activation of sigma 54-dependent promoters at levels III and IV and negative autoregulation of the level II fliF promoter. We have physically mapped the fliF operon, identified four new genes in the transcription unit, and determined that the organization of these genes is 5'-fliF-fliG-flbE-fliN-flbD-3'. Three of the genes encode homologs of the MS ring protein (FliF) and two switch proteins (FliG and FliN) of enteric bacteria, and the fourth encodes a predicted protein (FlbE) without obvious similarities to known bacterial proteins. We have introduced nonpolar mutations in each of the open reading frames and shown that all of the newly identified genes (fliF, fliG, flbE, and fliN) are required in addition to flbD for activation of the sigma 54-dependent flgK and flbG promoters at level III. In contrast, fliF, fliG, and flbE, but not fliN, are required in addition to flbD for negative autoregulation of the level II fliF promoter. The simplest interpretation of these results is that the requirements of FlbD in transcriptional activation and repression are not identical, and we speculate that FlbD function is subject to dual or overlapping controls. We also discuss the requirement of multiple structural genes for regulation of levels II and III genes and suggest that fla gene expression in C. crescentus may be coupled to two checkpoints in flagellum assembly.

摘要

新月柄杆菌细胞周期中鞭毛(fla)基因的周期性和顺序性表达取决于它们在调控层次结构中从I级到IV级的组织方式,其中层次结构顶部的基因在细胞周期早期表达,并且是其下方基因后期表达所必需的。在这些研究中,我们研究了位于层次结构顶部附近的II级fliF操纵子的调控作用。fliF操纵子中的最后一个基因flbD编码一种转录因子,该因子是激活III级和IV级依赖于σ⁵⁴的启动子以及对II级fliF启动子进行负自调控所必需的。我们对fliF操纵子进行了物理定位,在转录单元中鉴定出四个新基因,并确定这些基因的组织方式为5'-fliF-fliG-flbE-fliN-flbD-3'。其中三个基因编码肠道细菌的MS环蛋白(FliF)和两种开关蛋白(FliG和FliN)的同源物,第四个基因编码一种预测蛋白(FlbE),与已知细菌蛋白没有明显相似性。我们在每个开放阅读框中引入了非极性突变,并表明除了flbD之外,所有新鉴定的基因(fliF、fliG、flbE和fliN)都是激活III级依赖于σ⁵⁴的flgK和flbG启动子所必需的。相比之下,除了flbD之外,fliF、fliG和flbE是II级fliF启动子负自调控所必需的,而fliN不是。这些结果最简单的解释是,FlbD在转录激活和抑制中的要求并不相同,我们推测FlbD的功能受到双重或重叠控制。我们还讨论了多个结构基因对II级和III级基因调控的要求,并提出新月柄杆菌中fla基因的表达可能与鞭毛组装中的两个检查点相关联。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8779/197216/5217bf5dd11a/jbacter00042-0197-a.jpg

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