Department of Microbiology, Tumor and Cell Biology, Karolinska Institutet, 17177, Stockholm, Sweden.
College of Veterinary Medicine, Jilin University, Changchun, China.
NPJ Biofilms Microbiomes. 2022 May 11;8(1):39. doi: 10.1038/s41522-022-00294-z.
In rod-shaped bacteria, morphological plasticity occurs in response to stress, which blocks cell division to promote filamentation. We demonstrate here that overexpression of the patatin-like phospholipase variant CapV, but not CapV, causes pronounced sulA-independent pyridoxine-inhibited cell filamentation in the Escherichia coli K-12-derivative MG1655 associated with restriction of flagella production and swimming motility. Conserved amino acids in canonical patatin-like phospholipase A motifs, but not the nucleophilic serine, are required to mediate CapV phenotypes. Furthermore, CapV production substantially alters the lipidome and colony morphotype including rdar biofilm formation with modulation of the production of the biofilm activator CsgD, and affects additional bacterial traits such as the efficiency of phage infection and antimicrobial susceptibility. Moreover, genetically diverse commensal and pathogenic E. coli strains and Salmonella typhimurium responded with cell filamentation and modulation in colony morphotype formation to CapV expression. In conclusion, this work identifies the CapV variant CapV as a pleiotropic regulator, emphasizes a scaffold function for patatin-like phospholipases, and highlights the impact of the substitution of a single conserved amino acid for protein functionality and alteration of host physiology.
在杆状细菌中,形态可塑性是对压力的反应,这种压力会阻止细胞分裂以促进丝状化。我们在这里证明,过表达类脂酶变体 CapV,但不是 CapV,会导致大肠杆菌 K-12 衍生物 MG1655 中明显的 sulA 非依赖性吡哆醇抑制细胞丝状化,同时限制鞭毛的产生和游动能力。经典类脂酶 A 基序中的保守氨基酸,但不是亲核丝氨酸,是介导 CapV 表型所必需的。此外,CapV 的产生会极大地改变脂类组和菌落形态,包括 rdar 生物膜的形成,同时调节生物膜激活因子 CsgD 的产生,并影响噬菌体感染效率和抗菌敏感性等其他细菌特性。此外,遗传上不同的共生和致病性大肠杆菌菌株和鼠伤寒沙门氏菌对 CapV 表达的反应是细胞丝状化和菌落形态形成的调节。总之,这项工作确定了 CapV 变体 CapV 是一种多效调节剂,强调了类脂酶的支架功能,并突出了单个保守氨基酸取代对蛋白质功能和宿主生理改变的影响。