Department of Biological Sciences/Molecular Biology and Genetics, Middle East Technical University, Ankara, Turkey.
Faculty of Biology and Spemann Graduate School of Biology and Medicine, University of Freiburg, Freiburg, Germany.
J Microbiol. 2020 Apr;58(4):297-313. doi: 10.1007/s12275-020-9064-0. Epub 2020 Jan 28.
Bacilysin, as the simplest peptide antibiotic made up of only L-alanine and L-anticapsin, is produced and excreted by Bacillus subtilis under the control of quorum sensing. We analyzed bacilysin-nonproducing strain OGU1 which was obtained by bacA-targeted pMutin T3 insertion into the parental strain genome resulting in a genomic organization (bacA'::lacZ::erm::bacABCDEF) to form an IPTG-inducible bac operon. Although IPTG induction provided 3- to 5-fold increment in the transcription of bac operon genes, no bacilysin activity was detectable in bioassays and inability of the OGU1 to form bacilysin was confirmed by UPLC-mass spectrometry analysis. Phenotypic analyses revealed the deficiencies in OGU1 with respect to colony pigmentation, spore coat proteins, spore resistance and germination, which could be rescued by external addition of bacilysin concentrate into its cultures. 2DE MALDI-TOF/MS and nanoLC-MS/MS were used as complementary approaches to compare cytosolic proteomes of OGU1. 2-DE identified 159 differentially expressed proteins corresponding to 121 distinct ORFs. In nanoLC-MS/MS, 76 proteins were differentially expressed in OGU1. Quantitative transcript analyses of selected genes validated the proteomic findings. Overall, the results pointed to the impact of bacilysin on expression of certain proteins of sporulation and morphogenesis; the members of mother cell compartment-specific σ and σ regulons in particular, quorum sensing and two component-global regulatory systems, peptide transport, stress response as well as CodY- and ScoC-regulated proteins.
枯草杆菌素是由枯草芽孢杆菌在群体感应控制下产生和分泌的最简单的由 L-丙氨酸和 L-反式环半胱氨酸组成的肽类抗生素。我们分析了枯草杆菌素非产生株 OGU1,该菌株是通过 bacA 靶向的 pMutin T3 插入到亲本菌株基因组中获得的,导致基因组组织(bacA'::lacZ::erm::bacABCDEF)形成 IPTG 诱导型 bac 操纵子。虽然 IPTG 诱导使 bac 操纵子基因的转录增加了 3-5 倍,但生物测定中检测不到枯草杆菌素活性,并且 UPLC-质谱分析证实了 OGU1 无法形成枯草杆菌素。表型分析显示,OGU1 存在菌落色素、孢子衣蛋白、孢子抗性和萌发缺陷,这些缺陷可以通过向其培养物中添加枯草杆菌素浓缩物来挽救。2-DE MALDI-TOF/MS 和 nanoLC-MS/MS 被用作比较 OGU1 胞质蛋白组的互补方法。2-DE 鉴定了 159 个差异表达的蛋白质,对应于 121 个不同的 ORF。在 nanoLC-MS/MS 中,OGU1 中有 76 个蛋白质表达差异。选择基因的定量转录分析验证了蛋白质组学发现。总的来说,结果表明枯草杆菌素对孢子形成和形态发生某些蛋白质的表达有影响;特别是母细胞室特有的 σ 和 σ 调节子成员、群体感应和双组分-全局调节系统、肽运输、应激反应以及 CodY-和 ScoC 调节蛋白。