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利用溶血曼氏杆菌中的操纵子融合来鉴定白细胞毒素转录的环境调节因子和顺式作用调节因子。

Use of operon fusions in Mannheimia haemolytica to identify environmental and cis-acting regulators of leukotoxin transcription.

作者信息

Marciel A M, Highlander S K

机构信息

Department of Molecular Virology and Microbiology, Baylor College of Medicine, Houston, Texas 77030, USA.

出版信息

Infect Immun. 2001 Oct;69(10):6231-9. doi: 10.1128/IAI.69.10.6231-6239.2001.

Abstract

The leukotoxin of Mannheimia haemolytica is an important virulence factor that contributes to much of the pathology observed in the lungs of animals with bovine shipping fever pneumonia. We believe that identification of factors that regulate leukotoxin expression may provide insight into M. haemolytica pathogenicity. The DNA sequence upstream of the leukotoxin operon is divergently shared by P(lapT), which transcribes an arginine permease gene. The intergenic region contains several elements that are potential sites for transcriptional modulation of the promoters. We have developed plasmid-borne chloramphenicol acetyltransferase (cat) operon fusions, as well as lktC::cat chromosomal fusions, to study transcription initiation in M. haemolytica. Using these genetic tools, we have identified cis-acting sequences and environmental conditions that modulate transcription of the leukotoxin and lapT promoters. By deletion analysis, promoters were shown to rely on sequences upstream of their -10 and -35 regions for full activity. Direct repeats of the sequence TGT-N(11)-ACA and a static bend region caused by phased adenine tracts were necessary for full activation of P(lkt). A computer-generated model of the promoter's structure shows how DNA bending brings the repeat sequences within close proximity to the P(lkt) RNA polymerase, and we hypothesize that these repeats are a binding site for an activator of leukotoxin transcription. The lktC::cat operon fusion was also used to demonstrate that, like that of other RTX toxins, leukotoxin transcription is environmentally regulated. Roles for iron deprivation and temperature change were identified.

摘要

溶血曼氏杆菌的白细胞毒素是一种重要的毒力因子,它在牛运输热肺炎动物的肺部所观察到的许多病理过程中起作用。我们认为,鉴定调节白细胞毒素表达的因子可能有助于深入了解溶血曼氏杆菌的致病性。白细胞毒素操纵子上游的DNA序列与转录精氨酸通透酶基因的P(lapT)反向共享。基因间区域包含几个元件,它们是启动子转录调控的潜在位点。我们构建了质粒携带的氯霉素乙酰转移酶(cat)操纵子融合体以及lktC::cat染色体融合体,以研究溶血曼氏杆菌中的转录起始。利用这些遗传工具,我们鉴定了调节白细胞毒素和lapT启动子转录的顺式作用序列和环境条件。通过缺失分析表明,启动子的完全活性依赖于其-10和-35区域上游的序列。序列TGT-N(11)-ACA的直接重复序列和由相位腺嘌呤序列引起的静态弯曲区域是P(lkt)完全激活所必需的。启动子结构的计算机生成模型显示了DNA弯曲如何使重复序列靠近P(lkt) RNA聚合酶,我们推测这些重复序列是白细胞毒素转录激活剂的结合位点。lktC::cat操纵子融合体还用于证明,与其他RTX毒素一样,白细胞毒素转录受环境调节。确定了缺铁和温度变化的作用。

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