Jian Huahua, Xu Guanpeng, Gai Yingbao, Xu Jun, Xiao Xiang
State Key Laboratory of Microbial Metabolism, School of Life Sciences and Biotechnology, Shanghai Jiao Tong University, Shanghai, People's Republic of China.
Key Laboratory of Marine Biogenetic Resources, Third Institute of Oceanography, State Oceanic Administration, Xiamen, People's Republic of China.
Appl Environ Microbiol. 2016 Apr 4;82(8):2388-2398. doi: 10.1128/AEM.00297-16. Print 2016 Apr.
Although the histone-like nucleoid structuring protein (H-NS) is well known for its involvement in the adaptation of mesophilic bacteria, such as Escherichia coli, to cold environments and high-pressure stress, an understanding of the role of H-NS in the cold-adapted benthic microorganisms that live in the deep-sea ecosystem, which covers approximately 60% of the earth's surface, is still lacking. In this study, we characterized the function of H-NS in Shewanella piezotolerans WP3, which was isolated from West Pacific sediment at a depth of 1,914 m. Anhns gene deletion mutant (WP3Δhns) was constructed, and comparative whole-genome microarray analysis was performed. H-NS had a significant influence (fold change, >2) on the expression of a variety of WP3 genes (274 and 280 genes were upregulated and downregulated, respectively), particularly genes related to energy production and conversion. Notably, WP3Δhnsexhibited higher expression levels of lateral flagellar genes than WP3 and showed enhanced swarming motility and lateral flagellar production compared to those of WP3. The DNA gel mobility shift experiment showed that H-NS bound specifically to the promoter of lateral flagellar genes. Moreover, the high-affinity binding sequences of H-NS were identified by DNase I protection footprinting, and the results support the "binding and spreading" model for H-NS functioning. To our knowledge, this is the first attempt to characterize the function of the universal regulator H-NS in a deep-sea bacterium. Our data revealed that H-NS has a novel function as a repressor of the expression of genes related to the energy-consuming secondary flagellar system and to swarming motility.
尽管类组蛋白核仁结构蛋白(H-NS)因参与嗜温菌(如大肠杆菌)适应寒冷环境和高压胁迫而广为人知,但对于生活在覆盖地球表面约60%的深海生态系统中的冷适应底栖微生物中H-NS的作用,仍缺乏了解。在本研究中,我们对耐压希瓦氏菌WP3中H-NS的功能进行了表征,该菌株是从西太平洋1914米深处的沉积物中分离得到的。构建了anhns基因缺失突变体(WP3Δhns),并进行了比较全基因组微阵列分析。H-NS对WP3多种基因的表达有显著影响(倍数变化>2)(分别有274和280个基因上调和下调),特别是与能量产生和转换相关的基因。值得注意的是,WP3Δhns的侧生鞭毛基因表达水平高于WP3,与WP3相比,其群体运动性和侧生鞭毛产生增强。DNA凝胶迁移率变动实验表明,H-NS特异性结合侧生鞭毛基因的启动子。此外,通过DNase I保护足迹法鉴定了H-NS的高亲和力结合序列,结果支持H-NS功能的“结合与扩散”模型。据我们所知,这是首次尝试表征通用调节因子H-NS在深海细菌中的功能。我们的数据表明,H-NS作为与耗能二级鞭毛系统和群体运动相关基因表达的阻遏物具有新功能。