Alhadlaq Meshari Ahmed, Green Jeffrey, Kudhair Bassam K
Molecular Biology and Biotechnology, University of Sheffield, Sheffield, United Kingdom,
Research and Laboratories Sector, Saudi Food and Drug Authority, Riyadh, Saudi Arabia,
Microb Physiol. 2021;31(2):135-145. doi: 10.1159/000512751. Epub 2021 Mar 17.
A strain of Kytococcus sedentarius was isolated from a dehumidifier operating in a university lecture theatre. Genome analysis and phenotypic characterisation showed that this strain, K. sedentarius MBB13, was a moderately halotolerant aerobe with a branched aerobic electron transport chain and genes that could contribute to erythromycin resistance. The major compatible solute was glycine betaine, with ectoine and proline being deployed at higher osmolarities. Actinobacteria possess multiple WhiB-like (Wbl) regulatory proteins, and K. sedentarius MBB13 has four (WhiB1, WhiB2, WhiB3, and WhiB7). Wbls are iron-sulfur proteins that regulate gene expression through interactions with RNA polymerase sigma factors and/or other regulatory proteins. Bacterial two-hybrid analyses suggested that WhiB1 and WhiB2, but not WhiB3 and WhiB7, interact with the C-terminal domain of the major sigma factor, σA; no interaction was detected between any of the Wbl proteins and the only alternative sigma factors, σB, σH, or σJ. The interaction between σA and WhiB1 or WhiB2 was disrupted in a heterologous system under growth conditions that produce nitric oxide and the iron-sulfur clusters of the isolated WhiB1 and WhiB2 proteins reacted with nitric oxide. Thus, K. sedentarius strain exhibits the major phenotypic characteristics of the type strain and a comprehensive examination of the interactions between its four Wbl proteins and four sigma factors suggested that the Wbl proteins all operate through interaction with σA.
从一所大学讲堂中运行的除湿机中分离出了一株久坐不动库克菌。基因组分析和表型特征表明,该菌株,即久坐不动库克菌MBB13,是一种中度耐盐需氧菌,具有分支的有氧电子传递链和可能导致红霉素耐药的基因。主要的相容性溶质是甘氨酸甜菜碱,在较高渗透压下会积累ectoine和脯氨酸。放线菌拥有多种WhiB样(Wbl)调节蛋白,而久坐不动库克菌MBB13有四种(WhiB1、WhiB2、WhiB3和WhiB7)。Wbl是铁硫蛋白,通过与RNA聚合酶σ因子和/或其他调节蛋白相互作用来调节基因表达。细菌双杂交分析表明,WhiB1和WhiB2与主要σ因子σA的C末端结构域相互作用,而WhiB3和WhiB7则不与之相互作用;在任何Wbl蛋白与唯一的替代σ因子σB、σH或σJ之间未检测到相互作用。在产生一氧化氮的生长条件下,异源系统中σA与WhiB1或WhiB2之间的相互作用被破坏,并且分离出的WhiB1和WhiB2蛋白的铁硫簇与一氧化氮发生反应。因此,久坐不动库克菌菌株表现出模式菌株的主要表型特征,对其四种Wbl蛋白和四种σ因子之间相互作用进行的全面研究表明,Wbl蛋白均通过与σA相互作用发挥作用。